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Email Encryption Market Worth $9.9 Billion by 2025 – Exclusive Report by MarketsandMarkets – PRNewswire

CHICAGO, July 16, 2020 /PRNewswire/ -- According to the research report "Email Encryption Marketby Component (Solution and Service (Training and Education, and Support and Maintenance)), Deployment Mode (On-premises and Cloud), Organization Size, Industry Vertical, and Region - Global Forecast to 2025", published by MarketsandMarkets, provides comprehensive insights on email encryption market, projected to grow from USD 3.4 billion in 2020 to USD 9.9 billion by 2025, at a CAGR of 23.8% during the forecast period, in the post-COVID-19 scenario. Email encryption is an essential tool to secure email messages and content, with real-time accessibility only from intended recipients. As emails are vital business platforms used for the purpose of communicating confidential information among intended recipients; hence, email encryption solutions are needed to secure this information. The major factors driving the growth of the email encryption market are increasing instances of phishing and spam emails, stringent industry regulations, compliances and mandate to comply with data protection directives.

Browse in-depth TOC on"Email Encryption Market"

320 Tables45 Figures267 Pages

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Services segment is expected to grow at the highest CAGR in the Email Encryption Market during the forecast period

The Email Encryption Market is segmented by component into solution and services. The services segment is expected to grow at the highest CAGR from 2020 to 2025. With the increase in the adoption of email encryption solutions, the demand for services associated with it is also growing. The Email Encryption Market by service has been segmented into training and education, and support and maintenance. Email encryption services are offered by solution vendors to enable customers to efficiently use the email encryption solution and maintain it. The email encryption services are used to reduce operational overhead costs and risks, and assist in effectively working with organizations' complex network infrastructure.

Banking, Financial Services, and Insurance (BFSI) industry vertical is estimated to dominate the Email Encryption Market in 2020

Enterprises across various industry verticals have been using the email messaging as one of the most common modes of communication for their business purposes. The BFSI industry vertical is expected to generate major share of revenue during the forecast period owing to the increasing adoption of security solutions driven by the growing financial security threats across the organizations, which can lead to theft, hamper the reputation of organizations, and can cause huge financial losses. Additionally, email encryption is expected to play a key role in healthcare enterprises. This is majorly due to the rising spear phishing attacks and possible data breaches over the highly sensitive and confidential information and stringent compliance to regulatory requirements. This has led the healthcare industry vertical to grow at the highest CAGR during the forecast period.

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North America is expected to dominate the Email Encryption Market in 2020

The global Email Encryption Market is segmented by region into North America, Europe, Asia Pacific (APAC), Middle East and Africa (MEA), and Latin America. The technologically advanced North American region has the highest number of email encryption vendors. Additionally, the region has witnessed large-scale implementation of email encryption solutions across various industry verticals, such as BFSI, healthcare, and IT and telecom, owing to the stringent regulations and the need to compliance. The region is thus estimated to be the largest market for email encryption solutions. Moreover, several Small and Medium Enterprises (SMEs) and large enterprises across various industry verticals in the European and APAC region are investing in the adoption of email encryption solutions to protect their infrastructure and critical information from email frauds and thefts. The introduction of cloud-based, hybrid and customized email encryption solutions is set to change the way businesses are protecting their critical email communications and infrastructure.

The report encompasses the different strategies such as partnerships and collaborations, mergers and acquisitions, and product developments adopted by the major players to increase their market share. Some of the major technology vendors in the Email Encryption Market are Micro Focus (UK), Symantech (US), Cisco (US), Trend Micro (Japan), Sophos (UK), Proofpoint (US), BAE Systems (UK), Zix (US),Entrust Datacard (US), Mimecast (UK), Egress Software (UK), Intemedia (US), Virtru (US), Echoworx (Canada), Lux Sci (US), Cryptzone (US).

Browse Adjacent Markets: Information Security Market ResearchReports & Consulting

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https://www.marketsandmarkets.com/Market-Reports/cyber-security-market-505.html

Messaging Security Market by Solution (Content Filtering, Email Encryption, Data Loss Prevention, Antispam and Antimalware), Service, Mode of Communication (Email Messaging, Instant Messaging), Deployment Mode, Vertical, and Region - Global Forecast to 2022

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Encryption Software Market Overviews With Key Players, Size Growth Drivers As Well As Industry Challenges Opportunities To 2027 – Connected Lifestyle

Encryption Software Market 2020-2027 has been released with reliable information and accurate forecasts for a better understanding of the current and future market scenarios. The report offers an in-depth analysis of the global market, including qualitative and quantitative insights, historical data, and estimated projections about the market size and share in the forecast period. The forecasts mentioned in the report have been acquired by using proven research assumptions and methodologies.

Encryption Software market report consists of market definition and overview. The target audience for the market is also included for better understanding the market scenario. The research analysts have conducted several primary and secondary researches in order to obtain the numerical for the market. The compound annual growth rate of the Remote Patient Monitoring market is revised and updated in the report study. This is owing to the changed market conditions amidst COVID-19. Several research methodologies and tools were used for further validating the data that was obtained through these researches.

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The major companies profiled in the Smart Glove Marketinclude:

Microsoft Corporation, IBM Corporation, EMC Corporation, Symantec Corporation, Intel Security, Sophos Holdings Ltd, McAfee, Check Point Software Technologies, Proofpoint, and Trend Micro.

Furthermore, the statistical survey in the report focuses on product specifications, costs, production capacities, marketing channels, and market players. Upstream raw materials, downstream demand analysis, and a list of end-user industries have been studied systematically, along with the suppliers in this market. The product flow and distribution channel have also been presented in this research report.

Component Type Outlook (Revenue, USD Billion; 2016-2026)ServicesSolutions

Usages type Outlook (Revenue, USD Billion; 2016-2026)Encryption for Data-in-transitEncryption for Data-at-rest

Deployment type Outlook (Revenue, USD Billion; 2016-2026)Cloud-basedOn-premise

Application area Type Outlook (Revenue, USD Billion; 2016-2026)Folder EncryptionDisk EncryptionDatabase EncryptionNetwork Traffic EncryptionWeb Communication EncryptionCloud EncryptionOthers

End-use Type Outlook (Revenue, USD Billion; 2016-2026)BFSIHealthcarePublic sectorOthers

The Encryption Software Market research report offers an eight-year forecast.

By Regions:

North America (The US, Canada, and Mexico)

Europe (the UK, Germany, France, and Rest of Europe)

Asia Pacific (China, India, and Rest of Asia Pacific)

Latin America (Brazil and Rest of Latin America)

Middle East & Africa (Saudi Arabia, the UAE, South Africa, and Rest of Middle East & Africa)

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The Encryption Software Market Report Consists of the Following Points:

The report consists of an overall prospect of the market that helps gain significant insights about the global market.

The factors responsible for the growth of the market have been mentioned. This data has been gathered from primary and secondary sources by industry professionals. This provides an in-depth understanding of key segments and their future prospects.

The report analyses the latest developments and the profiles of the leading competitors in the market.

The market has been categorized based on types, applications, and regions. For an in-depth analysis and better understanding of the market, the key segments have been further categorized into sub-segments.

To know more about the report@ https://www.reportsanddata.com/report-detail/encryption-software-market

In conclusion, the Encryption Software Market report is a reliable source for accessing the research data that is projected to exponentially accelerate your business. The report provides information such as economic scenarios, benefits, limits, trends, market growth rate, and figures. SWOT analysis is also incorporated in the report along with speculation attainability investigation and venture return investigation.

David is an Experience Business writer who regularly contributes to the blog, He specializes in manufacturing news

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Encryption Software Market 2020 | Covid-19 Impact Analysis and Industry Forecast Report Till 2024 – 3rd Watch News

The Encryption Software Market provides qualitative and quantitative research to provide a complete and comprehensive analysis of the Competition, Insights market for Encryption Software Market. It is a detailed report that focuses on primary and secondary factors, market share, top divisions, and regional analysis. It is a series of empirical analysis based on past data, current and future estimates and predicted Encryption Software Market developments.

This report encases exhaustive investigation on the market and are surveyed through volume and worth information approved on three methodologies including top organizations incomes. It finishes up with exact and genuine market estimations considering all the boundaries and market elements. Each essential and unequivocal detail for the turn of events and limitation of the market is referenced in fine focuses with arrangements and proposals that may influence the market in not so distant future. Division of the market are concentrated explicitly to give significant information for valuable market ventures.

Information about the size of the market (before the finish of the estimate year), organizations that are destined to raise their serious capacities, driving fragments, and difficulties influencing the development of the market are given in the report. Diverse land zones are profoundly examined and a serious situation has been introduced to help new participants, driving market players, and financial specialists to distinguish rising economies.

Our analysis involves the study of the market taking into consideration the impact of the COVID-19 pandemic. Please get in touch with us to get your hands on an exhaustive coverage of the impact of the current situation on the market. Our expert team of analysts will provide as per report customized to your requirement.

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Encryption Software Market competition by top Manufacturers: Microsoft Corporation (U.S.), Sophos Ltd. (U.S.), CheckPoint Software Technologies Ltd. (Israel)., Trend Micro Inc. (Japan), Symantec Corporation (U.S.), IBM Corporation (U.S.), SAS Institute Inc. (U.S.), Intel Security Group (McAfee) (U.S.), EMC Corporation (U.S.), WinMagic Inc. (Canada).

Market Segment as follows:

By the product type, the market is primarily split into: Cloud, On-Premises.

Encryption Software Market by Application Segments: Financial Sector, Healthcare, Public Sector.

Segment by Regions: North America, Asia-Pacific, Europe, Central & South America, Middle East & Africa, Other Regions.

Detailed evaluation about the capacity, significant industry features, cost structure, Encryption Software Market demand and supply, production rate, consumption, import/export, Encryption Software Market share, CAGR, gross margin and much more are briefly examined in this report. Additionally, it offers brief appraisal related to the Encryption Software Market dynamics as well as recent marketing trends, alongside major industry segments and sub-segments.

Thus, with the rising adoption of the Encryption Software Market in the international sector, the industry for global Encryption Software Market is expected to represent a predicted outlook during the forecast phase from 2020- 2024. Additionally, the report on the Encryption Software Market delivers a systematic representation of the growth opportunities, Encryption Software Market dynamics and the existing trends are anticipated to shape the growth of the Encryption Software Market across the globe.

To conclude, the Encryption Software Market report will provide the clients with a high-yielding market analysis assisting them to understand the market status and come up with new market avenues to capture hold of the market share.

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Table of Content: Part I Encryption Software Industry Overview Chapter One Encryption Software Industry OverviewChapter Two Encryption Software Up and Down Stream Industry Analysis Part II Asia Encryption Software Industry (The Report Company Including the Below Listed But Not All) Chapter Three Asia Encryption Software Market AnalysisChapter Four 2015-2020 Asia Encryption Software Productions Supply Sales Demand Market Status and ForecastChapter Five Asia Encryption Software Key Manufacturers AnalysisChapter Six Asia Encryption Software Industry Development Trend Part III North American Encryption Software Industry (The Report Company Including the Below Listed But Not All) Chapter Seven North American Encryption Software Market AnalysisChapter Eight 2015-2020 North American Encryption Software Productions Supply Sales Demand Market Status and ForecastChapter Nine North American Encryption Software Key Manufacturers AnalysisChapter Ten North American Encryption Software Industry Development Trend Part IV Europe Encryption Software Industry Analysis (The Report Company Including the Below Listed But Not All) Chapter Eleven Europe Encryption Software Market AnalysisChapter Twelve 2015-2020 Europe Encryption Software Productions Supply Sales Demand Market Status and ForecastChapter Thirteen Europe Encryption Software Key Manufacturers AnalysisChapter Fourteen Europe Encryption Software Industry Development Trend Part V Encryption Software Marketing Channels and Investment Feasibility Chapter Fifteen Encryption Software Marketing Channels Development Proposals AnalysisChapter Sixteen Development Environmental AnalysisChapter Seventeen Encryption Software New Project Investment Feasibility Analysis Part VI Global Encryption Software Industry Conclusions Chapter Eighteen 2015-2020 Global Encryption Software Productions Supply Sales Demand Market Status and ForecastChapter Nineteen Global Encryption Software Industry Development TrendChapter Twenty Global Encryption Software Industry Research Conclusions

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Encryption Software Market 2020 Overview by Size, Share, Financial Services, Applications, Sales Data and Investment Opportunities till 2025 – Apsters…

This in-depth analytical presentation of the Encryption Software market is a ready-to-go market synopsis encompassing a gamut of market relevant factors that tend to have a steady and tangible impact on holistic growth prospects of the Encryption Software market. A thorough run down on essential elements such as drivers, threats, challenges, opportunities are discussed at length in this elaborate report on Encryption Software market and eventually analyzed to document logical conclusions.

Leading Companies Reviewed in the Report are:

IBM (US), Microsoft (US), Symantec (US), Thales e-Security (France), Trend Micro (Japan), Sophos (UK), Check Point (Israel), Micro Focus (UK), McAfee (US), Dell (US), WinMagic (US), ESET (US), Cryptomathic (Denmark), Bitdefender (Romania), Stormshield (France), and CipherCloud (US).

Get Exclusive Sample of Report on Encryption Software market is available @ https://www.adroitmarketresearch.com/contacts/request-sample/1055

This mindfully crafted, well researched, and methodically presented research report on the mentioned Encryption Software market suggests tangible progress in recognizing exact growth rendering factors. The report also makes progress in decoding the growth enablement triggers besides also deciphering the potential of each of the market dimensions in harnessing full-fledged, effortless growth. The report is crucial to evaluate and assess logical denunciations which have the potential to set the growth course in the discussed Encryption Software market. Apart from portraying a complete presentation on the gamut of market factors comprising aforementioned parameters, this specific high potential report further in its subsequent sections states information segmentation, as well as thoughtful perspectives on specific understanding comprising region specific developments as well as leading market players objectives to trigger maximum revenue generation and profits.

The report also incorporates ample understanding on numerous analytical practices such as SWOT and PESTEL analysis to source optimum profit resources in Encryption Software market. The report is also an up-to-date reference point of all major developments through out the market in terms of major mergers and acquisitions, geographical expansion ventures, new portfolio diversification initiatives and the like.

Quick Read Table of Contents of this Report @ https://www.adroitmarketresearch.com/industry-reports/encryption-software-market

Based on application, the Market has been segmented into:

NA

This meticulous research based analytical review on Encryption Software market is a high end expert handbook portraying crucial market relevant information and developments, encompassing a holistic record of growth promoting triggers encapsulating trends, factors, dynamics, challenges, and threats as well as barrier analysis that accurately direct and influence profit trajectory of Encryption Software market. In its subsequent sections, this report also shares crucial data on competitive landscape, identifying frontline players, complete with detailed analysis of marketing initiatives and strategies adopted to secure favorable investment returns and sustainable revenue pools in the Encryption Software market.

The report is a highly decisive data center encompassing a whole plethora of relevant information pertaining to historic data, also suggesting relevant cues on future growth predictions and forecast, based on which players in the Encryption Software market can thereby effectively deliver lucrative business discretion to ensure sustainable revenue flow amidst cut-throat market competition as well as emergence of new and disruptive market participants, intensifying competition. This high-end research comprehension on the Encryption Software market renders major impetus on detailed growth facets, in terms of product section, payment and transaction platforms.

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Flash drives and hard drives with military-grade encryption on sale – Mashable

Products featured here are selected by our partners at StackCommerce.If you buy something through links on our site, Mashable may earn an affiliate commission.Keep your personal information safe with these flash drives.

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Hardware Encryption Market: Size, Share, Analysis, Regional Outlook and Forecast 2020-2025 – Express Journal

This market research study determines the increase in changes and the aspects which are likely to have an impact on the growth of the Global Hardware Encryption Market. Increased demand for the technologies is also one of the factors, which are likely to boost the growth of the market research industry. The Hardware Encryption market research study uses several tools and techniques which are used for the determination of the growth of the Global Hardware Encryption Market.

The report on Hardware Encryption market is an in-depth analysis of this business sphere. As per the study, the market is poised to amass substantial returns while recording a strong CAGR between the prediction years. Valuable insights regarding numerous drivers and persisting challenges which will influence the growth trends of the industry are entailed in the report.

The research document scrutinizes the industry landscape based on various segmentations including product type, application spectrum, regional terrain, and competitive hierarchy. Information about the impact of COVID-19 on sales volume, revenue share, and anticipated growth rate displayed by each of the segments is presented. The report also emphasizes on company profile, product portfolio, and expansion strategies of major players in order to inform and enable industry stakeholders to take profit worthy decisions.

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Unveiling regional topography of Hardware Encryption market:

Other takeaways from the Hardware Encryption market report:

Major Highlights from Table of contents are listed below for quick look up into Hardware Encryption Market report

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Almost One-Third of Life Science Companies Set to Begin Quantum Computing Evaluation This Year – Lab Manager Magazine

BOSTON, MA July 14, 2020 New survey results fromthe Pistoia Alliance, the Quantum Economic Development Consortium (QED-C) and QuPharm show almost one-third (31 percent) of life science organizations polled are set to begin quantum computing evaluation this year. A further 39 percent are planning to evaluate next year or have quantum computing on their radar, while 30 percent have no current plans to evaluate.

The three organizations have collaborated to establish a cross-industry Community of Interest (CoI) to explore the opportunities for quantum computing to enhance the efficiency and effectiveness of biopharma R&D. The CoI aims to support companies that need help navigating the pathway to quantum computing and will facilitate collaboration between stakeholders, propose new ideas for quantum computing projects, and help interested parties define and articulate potential use cases.

The interest in quantum computing across many sectors is high, yet most biopharmaceutical companies are only just beginning the journey and exploring the potential for accelerating discovery, commented Emir Roach, one of the leaders of QuPharm. Quantum computing is a completely new paradigm of computing, and our mission is to accelerate its implementation in life sciences. We are looking forward to working with the Pistoia Alliance and QED-C to help educate the life science and health care industry on the benefits.

The survey showed that more than four out of five respondents (82 percent) believe quantum computing will impact the industry within the next decade. The same proportion of respondents believe discovery and development will be first to benefit from quantum computing deployments in the biopharmaceutical industry.

Quantum computing is likely to have a profound impact on precision medicine, enabling accelerated genomics and proteomics correlation, as well as the calculation of multiple probabilities and outcomes. It will also help organizations deliver new molecules and therapies to market faster by streamlining the discovery process and enabling quantum energy calculations for molecules, as predicted in the Pistoia Alliances 2030 vision report. In the future, such technology could help the industry more quickly and accurately model disease pathways caused by novel coronaviruses.

The CoI has come together to help organizations address the key issues that need to be solved if the extraordinary benefits of quantum computing are to be realized. Potential barriers identified in the survey include a shortage of skills and a lack of access to quantum computing infrastructure (both cited by 28 percent of respondents) and the need for clearly defined use cases (31 percent).

There are myriad opportunities for quantum computing in life sciences and health care, and through this community of interest the pharmaceutical and quantum computing sectors can work together to identify and communicate areas of early and high potential, commented Celia Merzbacher, deputy director at QED-C. While quantum computing is still emerging, now is the time to jointly define use cases and challenges in pharmaceutical discovery and development that quantum computing can address. Better understanding of the pharmaceutical bottlenecks can accelerate quantum computing hardware and software development for overcoming those.

Given the interest in quantum computing amongst our members, we wanted to create the community of interest to address their needs and questions. We are now looking for more companies to get involved and commit resources to help us explore use cases, commented John Wise, a member of the Pistoia Alliance Operations Team supporting the new quantum computing CoI. The shared-risk, shared-reward advantages of pre-competitive collaboration are an ideal way for companies to explore the opportunities and challenges of quantum computing. Those organisations that do not begin to evaluate quantum computing now are at risk of being left behind once its value is realized. Those that are equipped to adopt the technology when it matures will be significantly ahead.

The research survey was conducted at the Community of Interests inaugural webinar in June 2020. More than 240 attendees from life science and quantum computing organisations across the US and Europe participated. To find out more about the CoI and help to steer future projects on quantum computing, please contact John Wise at the Pistoia Alliance via john.wise@pistoiaalliance.org or Celia Merzbacher via celia.merzbacher@sri.com.

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Europe Quantum Computing Market 2020 | Scope of Current and Future Industry 2025 – Owned

Quantum Computing Market Research Report Cover Covid-19 Outbreak:

Brand Essence Market Research has developed a concise study on the Quantum Computing market to depict valuable insights related to significant market trends driving the industry. The report features analysis based on key opportunities and challenges confronted by market leaders while highlighting their competitive setting and corporate strategies for the estimated timeline.

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TheMajorPlayersCovered in this Report:Hewlett Packard, Alibaba Quantum Computing Laboratory, Booz Allen Hamilton Inc., QxBranch, SPARROW QUANTUM A/S, SeeQC Quantum Circuits, Inc., Anyon Systems Inc, Rigetti Computing, Toshiba Research Europe Ltd. Others & More.

By Vertical Aerospace & Defense BFSI Energy & Power Healthcare Information Technology & Telecommunication Transportation OthersBy Technology Superconducting loops technology Trapped ion technology Topological qubits technologyBy Offering Systems Consulting SolutionsBy Component Hardware Software ServicesBy Industry Defense Banking & Finance Energy & Power Chemicals Healthcare & PharmaceuticalsBy Application Optimization Machine Learning Simulation Others

Results of the recent scientific undertakings towards the development of new Quantum Computing products have been studied. Nevertheless, the factors affecting the leading industry players to adopt synthetic sourcing of the market products have also been studied in this statistical surveying report. The conclusions provided in this report are of great value for the leading industry players. Every organization partaking in the global production of the Quantum Computing market products have been mentioned in this report, in order to study the insights on cost-effective manufacturing methods, competitive landscape, and new avenues for applications.

Global Quantum ComputingMarket: Regional SegmentationFor further clarification, analysts have also segmented the market on the basis of geography. This type of segmentation allows the readers to understand the volatile political scenario in varying geographies and their impact on the global Quantum Computingmarket. On the basis of geography, the global market for Quantum Computinghas been segmented into:

North America(United States, Canada, and Mexico)Europe(Germany, France, UK, Russia, and Italy)Asia-Pacific(China, Japan, Korea, India, and Southeast Asia)South America(Brazil, Argentina, Colombia, etc.)Middle East and Africa(Saudi Arabia, UAE, Egypt, Nigeria, and South Africa)

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Report Methodology:

The information enclosed in this report is based upon both primary and secondary research methodologies.

Primary research methodology includes the interaction with service providers, suppliers, and industry professionals. Secondary research methodology includes a meticulous search of pertinent publications like company annual reports, financial reports, and exclusive databases.

Table of Content:

Market Overview: The report begins with this section where product overview and highlights of product and application segments of the Global Quantum Computing Market are provided. Highlights of the segmentation study include price, revenue, sales, sales growth rate, and market share by product.

Competition by Company: Here, the competition in the Worldwide Global Quantum Computing Market is analyzed, By price, revenue, sales, and market share by company, market rate, competitive situations Landscape, and latest trends, merger, expansion, acquisition, and market shares of top companies.

Company Profiles and Sales Data: As the name suggests, this section gives the sales data of key players of the Global Quantum Computing Market as well as some useful information on their business. It talks about the gross margin, price, revenue, products, and their specifications, type, applications, competitors, manufacturing base, and the main business of key players operating in the Global Quantum Computing Market.

Market Status and Outlook by Region: In this section, the report discusses about gross margin, sales, revenue, production, market share, CAGR, and market size by region. Here, the Global Quantum Computing Market is deeply analyzed on the basis of regions and countries such as North America, Europe, China, India, Japan, and the MEA.

Application or End User: This section of the research study shows how different end-user/application segments contribute to the Global Quantum Computing Market.

Market Forecast: Here, the report offers a complete forecast of the Global Quantum Computing Market by product, application, and region. It also offers global sales and revenue forecast for all years of the forecast period.

Research Findings and Conclusion: This is one of the last sections of the report where the findings of the analysts and the conclusion of the research study are provided.

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Europe Quantum Computing Market 2020 | Scope of Current and Future Industry 2025 - Owned

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Opinion |Dance of the synchronized quantum particles – Livemint

Three of our gang, you see, were women. On our second morning, all three found their periods had kicked in. They were so charmed and amused by this that they forgot any possible cramps or migraines. This was, they told us ignorant men, menstrual synchrony" the tendency for women who live together to begin menstruating on the same day every month. In 1971, a psychologist called Martha McClintock studied 180 women in a college dormitory. Menstrual synchrony, she concluded then, was real.

Now, this really didnt apply that weekend in NYC, because these ladies had only spent one day together. Besides, more recent research has questioned McClintocks findings. Even so, those long-ago NYC days came back to me after reading about some even more recent research, at IIT Kanpur. Not about menstruation, but about synchronization, and in the quantum world.

Whats synchronization? Imagine an individual a bird, a pendulum doing a particular motion over and over again. The bird is flapping its wings as it flies, the pendulum is swinging back and forth. Imagine several such individuals near each other, all doing the same motion several birds flying together in a flock, several pendulums swinging while hanging from a beam. When they start out, the birds are flapping to their own individual rhythms, the pendulums going in different directions. But then something beautiful happens: these individual motions synchronize. The birds flap in perfect coordination, so the flock moves as one marvellous whole. The pendulums swing in harmony.

In fact, synchronization was first observed in pendulums. In 1665, the great Dutch scientist Christiaan Huygens attached two pendulum clocks to a heavy beam. Soon after, the two pendulums were in lockstep.

Similarly, fireflies are known to break into spontaneous synchrony. When there are just one or a few, they light up at different timesa pleasant enough sight, but nothing to write home about. But there are spots in the coastal mangroves of Malaysia and Indonesia where whole hosts of the little insects congregate every evening and suddenly, synchrony happens. They switch on and off in perfect unison, putting on a light show like none youve seen.

There are, yes, other examples. At a concert, the audience will tend to applaud in sync. The reason we only ever see one side of the Moon is that the orbital and rotational periods of the Moon have, over time, synchronized with the rotation of our Earth. Your heart beats because the thousands of pacemaker" cells it contains pulse in synchrony. Some years ago, a bridge of a new and radical design was built over the Thames in London. When it was opened, people swarmed onto it on foot. It quickly started swaying disconcertingly from side to side enough, in turn, to force the pedestrians to walk in a certain awkward way just to keep their footing. On video, youll see hundreds of people on the bridge, all walking awkwardly but in step.

In his book Sync: The Emerging Science of Spontaneous Order, the mathematician Steven Strogatz writes: At the heart of the universe is a steady, insistent beat: the sound of cycles in sync. It pervades nature at every scale from the nucleus to the cosmos." He goes on to observe that this tendency for synchronization does not depend on intelligence, or life, or natural selection. It springs from the deepest source of all: the laws of physics". And thats where IIT Kanpur comes in.

In 2018, a team of Swiss researchers looked at the possibility of synchronization at the lower end of that scale that Strogatz mentions, or in some ways even off that end of the scale. Do the most elementary, fundamental particles known to physicists exhibit the same tendency to synchronize as somewhat larger objects such as starlings and pendulums and the moon? Were talking about electrons and neutrons, particles that occupy the so-called quantum" world. Can we get them to synchronize?

They concluded that the smallest quantum particles actually cannot be synchronized. These exhibit a spin"a form of angular momentum, in a sense the degree to which the particle is rotating of 1/2 (half). But there are ways in which such spin-half" particles can combine to form a spin-1" system, and the Swiss team predicted that these combinations are the smallest quantum systems that can be synchronized.

So, a physics research group at IIT Kanpur decided to test this prediction. These are guys, I should tell you, who are thoroughly accustomed to working with atoms: One day in 2016, their professor, Dr Saikat Ghosh, took me into their darkened lab and pointed to a small red glow visible in the middle of their apparatus. Thats a group of atoms," he said with a grin, and then tweaked some settings and the glow dropped out of sight. The point? They are able to manipulate atoms. On another visit, they underlined this particular skill by showing me their work with graphene, a sheet of carbon that is get this one atom thick.

So, after the Swiss prediction, Ghosh and his students took a million atoms of rubidiuma soft, silvery metal and cooled them nearly to whats known as absolute zero", or -273 Celsius. Could they get these atoms to show synchrony?

Lets be clear about what they were dealing with, though. The usual objects that synchronize pendulums, birds are called oscillators" because they are in some regular, rhythmic motion. Strictly, it is that motion of the oscillators that synchronizes. But were dealing here with objects we can see, which means the rules of classical" physics apply. Quantum objects like atoms behave differently. In fact, Ghosh told me that spin-1 atoms are not really oscillating in the same sense as pendulums and starlings in flight. Still, with that caveat in place, there are ways in which we can abstract their motion and treat them as oscillators.

In their experiment, the IIT team shot pulses of light at the group of rubidium atoms. Light is made up of photons, which are like minuscule bundles of energy. When they hit an atom, they flip" its spin. Embodied in that flip is the photons quantum information; in a real way, the photons are actually stored in these flipped atoms. This happens with such precision that you can later flip the atoms back and release the photons, thus retrieving" the stored light. In fact, with this storage and retrieval behaviour, the atoms are like memory cells, and this is part of the mechanism of quantum computing. (See my column from October 2018, Catch a quantum computer and pin it down).

But when the atoms are flipped and they store these photons, something else happens to them. When the light is retrieved, the IIT team found it displays interference fringes" a characteristic pattern of light and shadow (similar in concept to what causes stripes on tigers and zebras, or patterns in the sand on a beach). From this fringe pattern, the scientists can reconstruct the quantum state the atoms were inand voil, theres synchrony.

Did each individual atom synchronize to the light and since all one million atoms did so, is that how they are synchronized with each other as well? Thats to be tested still, but its a good way to think of what happened. Again, take fireflies. In one experiment, a single flashing LED bulb was placed in a forest. When the fireflies appeared, they quickly synchronized to the flashing bulb, and therefore to each other. As Dr Ghosh commented: two fireflies synchronizing is interesting, but an entire forest filled with fireflies lighting up in sync reveals new emergent patterns."

There are implications in all this for, among other things, quantum computing. The IIT teams paper remarks; [The] synchronization of spin-1 systems can provide insights in open quantum systems and find applications in synchronized quantum networks." (Observation of quantum phase synchronization in spin-1 atoms, by Arif Warsi Laskar, Pratik Adhikary, Suprodip Mondal, Parag Katiyar, Sai Vinjanampathy and Saikat Ghosh, published 3 June 2020).

There will be other applications too. But over 350 years after Christiaan Huygens stumbled on classical" synchronization, the IIT team has shown for the first time that this strangely satisfying behaviour happens in the quantum world too. No wonder their paper was chosen recently for special mention in the premier physics journal, Physical Review Letters.

A round of applause for the IIT folks, please. I know it will happen in synchrony.

Once a computer scientist, Dilip DSouza now lives in Mumbai and writes for his dinners. His Twitter handle is @DeathEndsFun

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Opinion |Dance of the synchronized quantum particles - Livemint

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Quantum Software Market 2020: Potential Growth, Challenges, and Know the Companies List Could Potentially Benefit or Loose out From the Impact of…

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Quantum Software Market 2020: Potential Growth, Challenges, and Know the Companies List Could Potentially Benefit or Loose out From the Impact of...

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