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Europe Quantum Computing Market Outlook, 2030

Europe quantum computing market was valued at $257.5 million in 2021 and will grow by 27.2% annually over 2021-2031.

The Europe Quantum Cryptography Market (2021–2031) is set for swift growth as governments, businesses, and research organizations throughout the continent acknowledge the urgent requirement for future-proof cybersecurity measures. Quantum cryptography, especially Quantum Key Distribution (QKD), provides an unbreakable encryption technique based on the concepts of quantum mechanics, making it well-suited for safeguarding sensitive information from the advancing threat of quantum-enabled cyberattacks. As conventional encryption techniques become increasingly susceptible to the capabilities of quantum computers, European countries are expediting investments in quantum communication infrastructure, secure networks, and innovative quantum-safe protocols. In recent times, Europe has established itself as a worldwide frontrunner in quantum innovation, energized by strategic public financing, cross-border partnerships, and a dynamic environment of startups and academic institutions. The European Commission has initiated flagship projects like the Quantum Flagship program, allocating billions for the progression of quantum technologies, including cryptography. Nations such as Germany, France, the Netherlands, and the UK are making significant investments in national quantum strategies, enhancing a strong regional framework for secure quantum communications. These initiatives not only bolster foundational R&D but also seek to commercialize quantum cryptographic solutions on a large scale, encouraging public-private collaborations and creating testbeds across telecommunications, defense, and banking sectors.

Europe quantum cryptography market was valued at $ 112.6 million in 2021 and will grow by 25.8% annually over 2021-2031. The telecommunications sector is among the first to adopt quantum cryptography in Europe. Major telecom companies and network operators are incorporating QKD into their systems to safeguard data transmission, particularly as 5G and cloud computing grow. Financial institutions, which manage large volumes of confidential data, are also experimenting with quantum-safe communication to secure customer information and compliance processes. Government agencies, especially those focused on national security, defense, and critical infrastructure, are principal drivers of demand, deploying QKD systems to safeguard classified communications against both current and future risks. Additionally, the applications of quantum cryptography go beyond secure communication. It serves as a crucial element in the creation of the quantum internet — a vision that Europe is vigorously pursuing through initiatives like EuroQCI (European Quantum Communication Infrastructure), which aims to establish a pan-European quantum-secured network. These advancements underscore Europe’s dedication to developing a quantum-secure digital economy, ensuring technological autonomy and cyber resilience in an increasingly interconnected environment.

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Several significant nations and areas throughout Europe are crucial in promoting the Quantum Cryptography Market, positioning the continent as a worldwide leader in quantum-secure communication. Among the most notable contributors are Germany, the United Kingdom, France, the Netherlands, Switzerland, and Austria, each actively pouring resources into quantum technologies and infrastructure. Germany distinguishes itself with considerable governmental funding for quantum research and a robust industrial foundation, fostering partnerships among universities, startups, and international tech companies. The nation's “Quantum Technologies Program” encompasses substantial endeavors in creating secure quantum communication systems and Quantum Key Distribution (QKD) networks, featuring pilot projects with major telecom operators involved. The United Kingdom also emerges as a dominant participant, with programs such as the UK National Quantum Technologies Programme and the Quantum Communications Hub. These initiatives concentrate on bringing quantum cryptography solutions to market and developing quantum-resilient communication systems, particularly in finance, defense, and vital infrastructure. France, via the CNRS and additional national research entities, is investing significantly in quantum encryption and secure networking, supported by the national quantum strategy and assistance from organizations like Thales and Atos, which are working on quantum-safe cybersecurity measures. The Netherlands hosts the QuTech institute as well as several European quantum innovation centers. It serves a crucial function in the European Quantum Communication Infrastructure (EuroQCI) initiative, focusing on incorporating QKD into classical networks and aiding in the creation of a continental quantum internet. Switzerland excels in commercial implementation, with companies such as ID Quantique leading the way in QKD systems. The nation’s neutrality and emphasis on data privacy establish it as a significant player in secure communication sectors.

The European cryptography market, categorized by component, incorporates a varied assortment of technologies and services. The Hardware with Embedded Software category includes servers, blades, RandD platforms, and random number generators—essential infrastructure supporting secure systems across industries. Independent Cryptography Solutions/Software emphasizes encryption, transmission, post-quantum cryptography, and crypto libraries, fostering innovation to address advancing cyber threats. Meanwhile, the Services category encompasses deployment and integration, support and maintenance, and consulting and advisory services, providing specialized expertise for implementation and strategy. From 2021 to 2031, these categories are expected to experience steady growth as enterprises and governments invest in strong, scalable cryptographic solutions to safeguard digital assets and sensitive data. Regarding application, the Europe cryptography market supports critical areas such as Network Infrastructure Security, Application Security, and Database Encryption. With rising cyber threats and compliance requirements, network infrastructure security is essential for protecting data in transit and preventing unauthorized access. Application security aims to protect software integrity, particularly for web and mobile applications, while database encryption guarantees data confidentiality and integrity while at rest. These applications are vital in establishing comprehensive security frameworks across sectors. Their adoption continues to increase significantly, driven by regulatory mandates like GDPR and the widening attack surface in today’s digital environment.

The European cryptography market is divided into Symmetric Key and Asymmetric Key algorithms, both crucial for secure communications. Symmetric key cryptography, recognized for its speed and efficiency, is frequently utilized in bulk data encryption and internal communications. In contrast, asymmetric key algorithms provide enhanced security for authentication and secure key exchanges, particularly in public networks. The escalating demand for secure digital identities, safe e-commerce, and encrypted communication channels propels the need across both types. With quantum computing on the horizon, the region is witnessing heightened investment in transforming traditional algorithms into more resilient, future-proof cryptographic standards. Europe’s cryptography market encompasses a broad range of industry verticals, each with unique security requirements. The Pharmaceutical and Healthcare sectors demand secure management of patient data, whereas the BFSI (Banking, Financial Services, and Insurance) sector heavily relies on encryption for fraud prevention and transaction security. Government and Public Services concentrate on protecting national security information, while Aerospace and Defense necessitates high-grade cryptographic systems. The Energy and Power and Automotive and Transportation sectors ensure operational robustness and safety through secure systems. Concurrently, IT and Telecom, Manufacturing, and the Chemical Industry promote innovation in encrypted communication and data protection. The sectoral diversity reflects the pervasive need for strong encryption to maintain privacy, compliance, and security. When categorized by organization size, the European cryptography market is classified into Small and Medium Enterprises (SMEs) and Large Enterprises. SMEs are progressively embracing scalable cryptographic tools to address increasing cyber threats and comply with stringent data privacy regulations without straining operational budgets. Their development is fueled by cloud-based and open-source encryption offerings. Conversely, large enterprises take the lead in deploying extensive cryptographic ecosystems, motivated by large data volumes, high-value transactions, and international operations. These organizations frequently adopt cutting-edge technologies such as post-quantum cryptography and zero-trust architectures. Both sectors exhibit robust revenue potential from 2021 to 2031, indicating a continent-wide focus on cybersecurity resilience.

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Anuj Mulhar

Anuj Mulhar

Industry Research Associate



Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030

Aspects covered in this report
• Europe Quantum Cryptography Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation

Based on Component, the Europe market is segmented into the following sub-markets with annual revenue ($ mn) for 2021-2031 included in each section.
• Hardware with Embedded Software
• Servers
• Blades
• R&D Platforms
• Random Number Generators
• Independent Cryptography Solutions/Software
• Encryption
• Transmission
• Post-Quantum Cryptography
• Crypto Libraries
• Services
• Deployment and Integration
• Support and Maintenance
• Consulting & Advisory

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Based on Application, the Europe market is segmented into the following sub-markets with annual revenue ($ mn) for 2021-2031 included in each section.
• Network Infrastructure Security
• Application Security
• Database Encryption

By Algorithm Type, the Europe market is segmented into the following sub-markets with annual revenue ($ mn) for 2021-2031 included in each section.
• Symmetric Key
• Asymmetric Key

By Industry Vertical, the Europe market is segmented into the following sub-markets with annual revenue ($ mn) for 2021-2031 included in each section.
• Pharmaceutical and Healthcare
• BFSI
• Government and Public Services
• Aerospace and Defense
• Energy and Power
• Automotive and Transportation
• Chemical Industry
• IT and Telecom
• Manufacturing Industry
• Other Industry Verticals

By Organization Size, the Europe market is segmented into the following sub-markets with annual revenue ($ mn) for 2021-2031 included in each section.
• SMEs
• Large Enterprises

The approach of the report:
This report consists of a combined approach of primary as well as secondary research. Initially, secondary research was used to get an understanding of the market and listing out the companies that are present in the market. The secondary research consists of third-party sources such as press releases, annual report of companies, analyzing the government generated reports and databases. After gathering the data from secondary sources primary research was conducted by making telephonic interviews with the leading players about how the market is functioning and then conducted trade calls with dealers and distributors of the market. Post this we have started doing primary calls to consumers by equally segmenting consumers in regional aspects, tier aspects, age group, and gender. Once we have primary data with us we have started verifying the details obtained from secondary sources.

Intended audience
This report can be useful to industry consultants, manufacturers, suppliers, associations & organizations related to agriculture industry, government bodies and other stakeholders to align their market-centric strategies. In addition to marketing & presentations, it will also increase competitive knowledge about the industry.

Table of Contents

  • 1 Introduction 7
  • 1.1 Industry Definition and Research Scope 7
  • 1.1.1 Industry Definition 7
  • 1.1.2 Research Scope 8
  • 1.2 Research Methodology 11
  • 1.2.1 Overview of Market Research Methodology 11
  • 1.2.2 Market Assumption 12
  • 1.2.3 Secondary Data 12
  • 1.2.4 Primary Data 12
  • 1.2.5 Data Filtration and Model Design 13
  • 1.2.6 Market Size/Share Estimation 14
  • 1.2.7 Research Limitations 15
  • 1.3 Executive Summary 16
  • 2 Market Overview and Dynamics 19
  • 2.1 Market Size and Forecast 19
  • 2.1.1 Impact of COVID-19 on World Economy 20
  • 2.1.2 Impact of COVID-19 on the Market 24
  • 2.2 Major Growth Drivers 26
  • 2.3 Market Restraints and Challenges 30
  • 2.4 Emerging Opportunities and Market Trends 33
  • 2.5 Porter’s Fiver Forces Analysis 37
  • 3 Segmentation of Europe Market by Component 41
  • 3.1 Market Overview by Component 41
  • 3.2 Hardware 43
  • 3.2.1 Quantum Computers 44
  • 3.2.2 Programmed Infrastructure 45
  • 3.3 Software 46
  • 3.3.1 Simulation 48
  • 3.3.2 Optimization 49
  • 3.3.3 Machine Learning 50
  • 3.3.4 Sampling and Others 51
  • 3.4 Services 52
  • 3.4.1 Professional Services 53
  • 3.4.2 Managed Services 54
  • 4 Segmentation of Europe Market by Technology 55
  • 4.1 Market Overview by Technology 55
  • 4.2 Superconducting Qubits 57
  • 4.3 Trapped Ion 58
  • 4.4 Quantum Cryptography 59
  • 4.5 Quantum Annealing 60
  • 4.6 Topological and Photonic 61
  • 5 Segmentation of Europe Market by Deployment 62
  • 5.1 Market Overview by Deployment 62
  • 5.2 On-premises Deployment 64
  • 5.3 Cloud-based Deployment 65
  • 6 Segmentation of Europe Market by Application 66
  • 6.1 Market Overview by Application 66
  • 6.2 Machine Learning (ML) 68
  • 6.3 Quantum Optimization 69
  • 6.4 Quantum Simulation 70
  • 6.5 Quantum Finance 71
  • 6.6 Quantum Chemistry 72
  • 6.7 Other Applications 73
  • 7 Segmentation of Europe Market by Industry Vertical 74
  • 7.1 Market Overview by Industry Vertical 74
  • 7.2 Pharmaceutical and Healthcare 76
  • 7.3 BFSI 77
  • 7.4 Government and Public Services 78
  • 7.5 Aerospace and Defense 79
  • 7.6 Energy & Utilities 80
  • 7.7 Automotive and Transportation 81
  • 7.8 Chemical Industry 82
  • 7.9 IT and Telecom 83
  • 7.10 Manufacturing Industry 84
  • 7.11 Cybersecurity 85
  • 7.12 Media and Entertainment 86
  • 7.13 Other Industry Verticals 87
  • 8 European Market 2021-2031 by Country 88
  • 8.1 Overview of European Market 88
  • 8.2 Germany 91
  • 8.3 U.K. 93
  • 8.4 France 95
  • 8.5 Spain 97
  • 8.6 Italy 99
  • 8.7 Netherlands 101
  • 8.8 Rest of European Market 103
  • 9 Competitive Landscape 105
  • 9.1 Overview of Key Vendors 105
  • 9.2 New Product Launch, Partnership, Investment, and M&A 108
  • 9.3 Company Profiles 109
  • 1QB Information Technologies Inc. 109
  • Accenture Plc. 111
  • Amazon Web Services, Inc. 112
  • Anyon Systems, Inc. 113
  • Atos SE 114
  • Cambridge Quantum Computing Ltd. 115
  • ColdQuanta, Inc. 116
  • D-Wave Systems Inc. 117
  • Google LLC by Alphabet Inc. 118
  • Honeywell International Inc. 119
  • IBM Corporation 120
  • Intel Corporation 121
  • IonQ Inc. 122
  • ISARA Corporation 123
  • Microsoft Corporation 124
  • QC Ware Corp. 125
  • Quantum Circuits, Inc. 126
  • Rigetti & Co, Inc. 127
  • River Lane Research 128
  • Xanadu Quantum Technologies Inc. 129
  • Zapata Computing, Inc. 130
  • RELATED REPORTS 131
  • ?

List of Tables:

Table 1. Snapshot of Europe Quantum Computing Market in Balanced Perspective, 2021-2031 17
Table 2. World Economic Outlook, 2021-2031 21
Table 3. World Economic Outlook, 2021-2023 22
Table 4. Main Product Trends and Market Opportunities in Europe Quantum Computing Market 33
Table 5. Europe Quantum Computing Market by Component, 2021-2031, $ mn 41
Table 6. Europe Quantum Computing Market: Hardware by Type, 2021-2031, $ mn 43
Table 7. Europe Quantum Computing Market: Software by Type, 2021-2031, $ mn 47
Table 8. Europe Quantum Computing Market: Services by Type, 2021-2031, $ mn 52
Table 9. Europe Quantum Computing Market: Professional Services by Type, 2021-2031, $ mn 53
Table 10. Europe Quantum Computing Market by Technology, 2021-2031, $ mn 55
Table 11. Europe Quantum Computing Market by Deployment, 2021-2031, $ mn 62
Table 12. Europe Quantum Computing Market by Application, 2021-2031, $ mn 66
Table 13. Europe Quantum Computing Market by Industry Vertical, 2021-2031, $ mn 74
Table 14. Europe Quantum Computing Market by Country, 2021-2031, $ mn 90
Table 15. Germany Quantum Computing Market by Component, 2021-2031, $ mn 92
Table 16. Germany Quantum Computing Market by Technology, 2021-2031, $ mn 92
Table 17. Germany Quantum Computing Market by Application, 2021-2031, $ mn 92
Table 18. U.K. Quantum Computing Market by Component, 2021-2031, $ mn 94
Table 19. U.K. Quantum Computing Market by Technology, 2021-2031, $ mn 94
Table 20. U.K. Quantum Computing Market by Application, 2021-2031, $ mn 94
Table 21. France Quantum Computing Market by Component, 2021-2031, $ mn 96
Table 22. France Quantum Computing Market by Technology, 2021-2031, $ mn 96
Table 23. France Quantum Computing Market by Application, 2021-2031, $ mn 96
Table 24. Spain Quantum Computing Market by Component, 2021-2031, $ mn 98
Table 25. Spain Quantum Computing Market by Technology, 2021-2031, $ mn 98
Table 26. Spain Quantum Computing Market by Application, 2021-2031, $ mn 98
Table 27. Italy Quantum Computing Market by Component, 2021-2031, $ mn 100
Table 28. Italy Quantum Computing Market by Technology, 2021-2031, $ mn 100
Table 29. Italy Quantum Computing Market by Application, 2021-2031, $ mn 100
Table 30. Netherlands Quantum Computing Market by Component, 2021-2031, $ mn 102
Table 31. Netherlands Quantum Computing Market by Technology, 2021-2031, $ mn 102
Table 32. Netherlands Quantum Computing Market by Application, 2021-2031, $ mn 102
Table 33. Quantum Computing Market in Rest of Europe by Country, 2021-2031, $ mn 104
Table 34. 1QB Information Technologies Inc.: Company Snapshot 109
Table 35. 1QB Information Technologies Inc.: Business Segmentation 110
Table 36. 1QB Information Technologies Inc.: Product Portfolio 110

List of Figures:

Figure 1. Research Method Flow Chart 11
Figure 2. Bottom-up Approach and Top-down Approach for Market Estimation 14
Figure 3. Europe Market Forecast in Optimistic, Conservative and Balanced Perspectives, 2021-2031 16
Figure 4. Europe Quantum Computing Market, 2021-2031, $ mn 19
Figure 5. Impact of COVID-19 on Business 24
Figure 6. Primary Drivers and Impact Factors of Europe Quantum Computing Market 26
Figure 7. World Industrial IoT Market, 2019-2030, $ bn 29
Figure 8. World 5G Enabled Industrial IoT (IIoT) Market, 2019-2030, $ bn 29
Figure 9. Primary Restraints and Impact Factors of Europe Quantum Computing Market 30
Figure 10. Investment Opportunity Analysis 34
Figure 11. Porter’s Fiver Forces Analysis of Europe Quantum Computing Market 37
Figure 12. Breakdown of Europe Quantum Computing Market by Component, 2021-2031, % of Revenue 42
Figure 13. Europe Addressable Market Cap in 2022-2031 by Component, Value ($ mn) and Share (%) 42
Figure 14. Europe Quantum Computing Market by Component: Hardware, 2021-2031, $ mn 43
Figure 15. Europe Quantum Computing Market by Hardware: Quantum Computers, 2021-2031, $ mn 44
Figure 16. Europe Quantum Computing Market by Hardware: Programmed Infrastructure, 2021-2031, $ mn 45
Figure 17. Europe Quantum Computing Market by Component: Software, 2021-2031, $ mn 46
Figure 18. Europe Quantum Computing Market by Software: Simulation, 2021-2031, $ mn 48
Figure 19. Europe Quantum Computing Market by Software: Optimization, 2021-2031, $ mn 49
Figure 20. Europe Quantum Computing Market by Software: Machine Learning, 2021-2031, $ mn 50
Figure 21. Europe Quantum Computing Market by Software: Sampling and Others, 2021-2031, $ mn 51
Figure 22. Europe Quantum Computing Market by Component: Services, 2021-2031, $ mn 52
Figure 23. Europe Quantum Computing Market by Services: Professional Services, 2021-2031, $ mn 53
Figure 24. Europe Quantum Computing Market by Services: Managed Services, 2021-2031, $ mn 54
Figure 25. Breakdown of Europe Quantum Computing Market by Technology, 2021-2031, % of Sales Revenue 56
Figure 26. Europe Addressable Market Cap in 2022-2031 by Technology, Value ($ mn) and Share (%) 56
Figure 27. Europe Quantum Computing Market by Technology: Superconducting Qubits, 2021-2031, $ mn 57
Figure 28. Europe Quantum Computing Market by Technology: Trapped Ion, 2021-2031, $ mn 58
Figure 29. Europe Quantum Computing Market by Technology: Quantum Cryptography, 2021-2031, $ mn 59
Figure 30. Europe Quantum Computing Market by Technology: Quantum Annealing, 2021-2031, $ mn 60
Figure 31. Europe Quantum Computing Market by Technology: Topological and Photonic, 2021-2031, $ mn 61
Figure 32. Breakdown of Europe Quantum Computing Market by Deployment, 2021-2031, % of Sales Revenue 63
Figure 33. Europe Addressable Market Cap in 2022-2031 by Deployment, Value ($ mn) and Share (%) 63
Figure 34. Europe Quantum Computing Market by Deployment: On-premises Deployment, 2021-2031, $ mn 64
Figure 35. Europe Quantum Computing Market by Deployment: Cloud-based Deployment, 2021-2031, $ mn 65
Figure 36. Breakdown of Europe Quantum Computing Market by Application, 2021-2031, % of Revenue 67
Figure 37. Europe Addressable Market Cap in 2022-2031 by Application, Value ($ mn) and Share (%) 67
Figure 38. Europe Quantum Computing Market by Application: Machine Learning (ML), 2021-2031, $ mn 68
Figure 39. Europe Quantum Computing Market by Application: Quantum Optimization, 2021-2031, $ mn 69
Figure 40. Europe Quantum Computing Market by Application: Quantum Simulation, 2021-2031, $ mn 70
Figure 41. Europe Quantum Computing Market by Application: Quantum Finance, 2021-2031, $ mn 71
Figure 42. Europe Quantum Computing Market by Application: Quantum Chemistry, 2021-2031, $ mn 72
Figure 43. Europe Quantum Computing Market by Application: Other Applications, 2021-2031, $ mn 73
Figure 44. Breakdown of Europe Quantum Computing Market by Industry Vertical, 2021-2031, % of Revenue 75
Figure 45. Europe Addressable Market Cap in 2022-2031 by Industry Vertical, Value ($ mn) and Share (%) 75
Figure 46. Europe Quantum Computing Market by Industry Vertical: Pharmaceutical and Healthcare, 2021-2031, $ mn 76
Figure 47. Europe Quantum Computing Market by Industry Vertical: BFSI, 2021-2031, $ mn 77
Figure 48. Europe Quantum Computing Market by Industry Vertical: Government and Public Services, 2021-2031, $ mn 78
Figure 49. Europe Quantum Computing Market by Industry Vertical: Aerospace and Defense, 2021-2031, $ mn 79
Figure 50. Europe Quantum Computing Market by Industry Vertical: Energy & Utilities, 2021-2031, $ mn 80
Figure 51. Europe Quantum Computing Market by Industry Vertical: Automotive and Transportation, 2021-2031, $ mn 81
Figure 52. Europe Quantum Computing Market by Industry Vertical: Chemical Industry, 2021-2031, $ mn 82
Figure 53. Europe Quantum Computing Market by Industry Vertical: IT and Telecom, 2021-2031, $ mn 83
Figure 54. Europe Quantum Computing Market by Industry Vertical: Manufacturing Industry, 2021-2031, $ mn 84
Figure 55. Europe Quantum Computing Market by Industry Vertical: Cybersecurity, 2021-2031, $ mn 85
Figure 56. Europe Quantum Computing Market by Industry Vertical: Media and Entertainment, 2021-2031, $ mn 86
Figure 57. Europe Quantum Computing Market by Industry Vertical: Other Industry Verticals, 2021-2031, $ mn 87
Figure 58. Breakdown of European Quantum Computing Market by Country, 2021 and 2031, % of Revenue 89
Figure 59. Contribution to Europe 2022-2031 Cumulative Market by Country, Value ($ mn) and Share (%) 90
Figure 60. Quantum Computing Market in Germany, 2021-2031, $ mn 91
Figure 61. Quantum Computing Market in U.K., 2021-2031, $ mn 93
Figure 62. Quantum Computing Market in France, 2021-2031, $ mn 95
Figure 63. Quantum Computing Market in Spain, 2021-2031, $ mn 97
Figure 64. Quantum Computing Market in Italy, 2021-2031, $ mn 99
Figure 65. Quantum Computing Market in Netherlands, 2021-2031, $ mn 101
Figure 66. Quantum Computing Market in Rest of Europe, 2021-2031, $ mn 103
Figure 67. Growth Stage of Europe Quantum Computing Industry over the Forecast Period 105
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Europe Quantum Computing Market Outlook, 2030

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