![]() Europe Post-Quantum Cryptography Market: Focus on Application, Product, and Regional and Country-Level Analysis - Analysis and Forecast, 2024-2034
Introduction to Europe Post-Quantum Cryptography Market The Europe post-quantum cryptography market was valued at $162.8 million in 2024 and is expected to grow at a CAGR of 42.16%, reaching $5,... もっと見る
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SummaryIntroduction to Europe Post-Quantum Cryptography MarketThe Europe post-quantum cryptography market was valued at $162.8 million in 2024 and is expected to grow at a CAGR of 42.16%, reaching $5,485.9 million by 2034. The post-quantum cryptography market in Europe is being driven by the increasing need to protect digital infrastructure from new threats posed by quantum computing, which is causing cryptographic algorithms to advance. The creation of quantum-resistant encryption solutions is being accelerated by increased R&D expenditures, government financing, and industry partnerships. Strategic alliances and a proactive regulatory framework that places a high priority on protecting sensitive data in important sectors like banking, defence, and telecommunications further support market expansion. In order to handle upcoming cybersecurity issues throughout the region, the market is still concentrated on innovation and enhancing security resilience as cyber threats continue to change. Market Introduction The Europe post-quantum cryptography (PQC) market is expanding rapidly as organizations and governments prepare for the cybersecurity challenges posed by quantum computing. Traditional encryption methods, including RSA and ECC, are vulnerable to quantum attacks, making the development of quantum-resistant cryptographic solutions a priority for industries such as banking, defense, telecommunications, and healthcare. Governments across Europe are taking proactive steps to strengthen digital security, with initiatives supporting the research and implementation of PQC solutions. Increased R&D investments, collaborations between technology firms and academic institutions, and regulatory frameworks emphasizing data protection are driving innovation in cryptographic algorithms. The adoption of lattice-based, hash-based, and multivariate polynomial encryption techniques is accelerating, ensuring long-term data security. The market is further fueled by the European Union’s commitment to cybersecurity advancements and digital sovereignty. As cyber threats evolve, organizations are integrating PQC into their security frameworks to future-proof sensitive data against quantum threats. The rising demand for secure communication, financial transactions, and defense applications is expected to propel market growth. With strong regulatory support and increasing enterprise adoption, the Europe PQC market is poised for sustained expansion, ensuring robust cybersecurity solutions for the quantum computing era. Market Segmentation Segmentation 1: by Security Application • Network Security • Application Security Segmentation 2: by End-Use Industry • BFSI • Government and Defense • IT and Telecommunications • Healthcare • Others Segmentation 3: by Solution • Lattice-Based Cryptography • Code-Based Cryptography • Multivariate Cryptography • Hash-Based Cryptography • Isogency-Based Cryptography • Symmetric Key Quantum Resistance Segmentation 4: by Product • Hardware o PQC Chips o Quantum-Resistant Processors o Cryptographic Accelerator o Quantum-Resistant HSMs o Embedded Systems with PQC • Software o PQC Encryption Libraries o PQC Key Management Systems o Quantum Resistant VPNs o PQC-Integrated Security Software o PQC for Cloud Security Segmentation 5: by Region • Europe: Germany, France, Spain, Italy, U.K., and Rest-of-Europe How can this report add value to an organization? Product/Innovation Strategy: The product segment helps readers understand the various applications of post-quantum cryptography solutions based on use cases (such as network security, data storage, secure communications, and digital transactions). It covers different cryptographic approaches, including lattice-based, hash-based, and multivariate algorithms. With advancements in quantum-resistant encryption and increasing concerns over data security, the post-quantum cryptography market presents a high-growth, high-investment opportunity. Growth/Marketing Strategy: The Europe post-quantum cryptography market has been expanding rapidly, offering significant opportunities for both established and emerging players. Key strategies covered include R&D investments, partnerships, collaborations, and product development initiatives. Companies in post-quantum cryptography market have been focusing on developing robust, quantum-resistant solutions to secure a leading position and address evolving cybersecurity needs. Competitive Strategy: The report profiles key players in the Europe post-quantum cryptography market, including technology providers and cybersecurity firms. It offers a comprehensive view of the competitive landscape, covering alliances, joint ventures, and innovation strategies, enabling readers to identify new revenue opportunities and gain a competitive edge in this evolving market. Key Market Players and Competition Synopsis The companies profiled in the report have been selected based on inputs gathered from primary experts and analyzing company coverage, product portfolio, and post-quantum cryptography market penetration. Some of the prominent names in the market are: • ID Quantique • ETAS • Infineon Technologies AG • PQShield Ltd • Thales • CryptoNext, inc. • Crypto Quantique • PQ Solutions Limited • Quantum Blockchains Table of ContentsExecutive SummaryScope 1 Market: Industry Outlook 1.1 Trends: Current and Future Impact Assessment 1.1.1 Trends Shaping Post-Quantum Cryptography Market 1.1.2 Increased Adoption of Quantum-Safe Algorithms 1.1.3 Standardization Efforts and Adoption of NIST Guidelines 1.2 Supply Chain Overview 1.2.1 Supply Chain Analysis 1.2.2 Value Chain Analysis 1.2.3 Quantum Technology Ecosystem 1.2.4 Market Map 1.2.4.1 Post-Quantum Cryptography Market - Product (by Product Type) 1.2.4.1.1 Hardware 1.2.4.1.2 Software 1.2.5 Investment Required for Efficient Deployment of Post-Quantum Cryptography (PQC) 1.2.5.1 Government Investment: U.S. Federal Government Initiatives 1.2.5.2 Corporate Investment: IBM and Microsoft 1.2.5.3 Industry-Specific Investment: Financial Sector 1.3 Research and Development Review 1.3.1 Patent Filing Trend (by Country and Company) 1.3.2 Global Initiatives 1.3.3 Stakeholder Analysis 1.3.3.1 Use Case 1.3.3.2 End User and Buying Criteria 1.4 Snapshot of the Quantum Computing Market 1.4.1 Leading Countries 1.4.2 Leading Companies 1.4.3 Key Findings 1.4.4 Global Market Projections 1.5 Market Dynamics Overview 1.5.1 Market Drivers 1.5.1.1 Rising Threat from Quantum Computing to Current Cryptographic Systems 1.5.1.2 Government Initiatives and Funding for Quantum-Resistant Technologies 1.5.2 Market Challenges 1.5.2.1 High Complexity and Cost of Implementing Post-Quantum Cryptography Solutions 1.5.2.2 Lack of Standardization and Interoperability across Cryptographic Systems 1.5.3 Market Opportunities 1.5.3.1 Expansion of Post-Quantum Cryptography in Financial and Healthcare Sectors 1.5.3.2 Collaboration between Academia, Industry, and Governments for Quantum-Safe Standards 2 Post-Quantum Cryptography Market (by Region) 2.1 Regional Summary 2.2 Post-Quantum Cryptography Market (by Region) 2.3 Europe 2.3.1 Key Market Participants in Europe 2.3.1.1 Business Drivers 2.3.1.2 Business Challenges 2.3.2 Application 2.3.3 Product 2.3.4 Germany 2.3.4.1 Application 2.3.4.2 Product 2.3.5 France 2.3.5.1 Application 2.3.5.2 Product 2.3.6 Italy 2.3.6.1 Application 2.3.6.2 Product 2.3.7 Spain 2.3.7.1 Application 2.3.7.2 Product 2.3.8 U.K. 2.3.8.1 Application 2.3.8.2 Product 2.3.9 Rest-of-Europe 2.3.9.1 Application 2.3.9.2 Product 3 Markets - Competitive Landscaped and Companies Profiled 3.1 Next Frontiers 3.2 Geographical Assessment 3.3 Competitive Landscape 3.4 Company Profiles 3.4.1 ID Quantique 3.4.1.1 Overview 3.4.1.2 Top Products/Product Portfolio 3.4.1.3 Top Competitors 3.4.1.4 Target Customers/End-Use Industries 3.4.1.5 Key Personnel 3.4.1.6 Analyst View 3.4.1.7 Market Share, 2023 3.4.2 ETAS 3.4.2.1 Overview 3.4.2.2 Top Products/Product Portfolio 3.4.2.3 Top Competitors 3.4.2.4 Target Customers/End-Use Industries 3.4.2.5 Key Personnel 3.4.2.6 Analyst View 3.4.2.7 Market Share, 2023 3.4.3 Infineon Technologies AG 3.4.3.1 Overview 3.4.3.2 Top Products/Product Portfolio 3.4.3.3 Top Competitors 3.4.3.4 Target Customers/End-Use Industries 3.4.3.5 Key Personnel 3.4.3.6 Analyst View 3.4.3.7 Market Share, 2023 3.4.4 PQShield Ltd 3.4.4.1 Overview 3.4.4.2 Top Products/Product Portfolio 3.4.4.3 Top Competitors 3.4.4.4 Target Customers/End-Use Industries 3.4.4.5 Key Personnel 3.4.4.6 Analyst View 3.4.4.7 Market Share, 2023 3.4.5 Thales 3.4.5.1 Overview 3.4.5.2 Top Products/Product Portfolio 3.4.5.3 Top Competitors 3.4.5.4 Target Customers/End-Use Industries 3.4.5.5 Key Personnel 3.4.5.6 Analyst View 3.4.5.7 Market Share, 2023 3.4.6 CryptoNext, inc. 3.4.6.1 Overview 3.4.6.2 Top Products/Product Portfolio 3.4.6.3 Top Competitors 3.4.6.4 Target Customers/End-Use Industries 3.4.6.5 Key Personnel 3.4.6.6 Analyst View 3.4.6.7 Market Share, 2023 3.4.7 Crypto Quantique 3.4.7.1 Overview 3.4.7.2 Top Products/Product Portfolio 3.4.7.3 Top Competitors 3.4.7.4 Target Customers/End-Use Industries 3.4.7.5 Key Personnel 3.4.7.6 Analyst View 3.4.7.7 Market Share, 2023 3.4.8 PQ Solutions Limited 3.4.8.1 Overview 3.4.8.2 Top Products/Product Portfolio 3.4.8.3 Top Competitors 3.4.8.4 Target Customers/End-Use Industries 3.4.8.5 Key Personnel 3.4.8.6 Analyst View 3.4.8.7 Market Share, 2023 3.4.9 Quantum Blockchains 3.4.9.1 Overview 3.4.9.2 Top Products/Product Portfolio 3.4.9.3 Top Competitors 3.4.9.4 Target Customers/End-Use Industries 3.4.9.5 Key Personnel 3.4.9.6 Analyst View 3.4.9.7 Market Share, 2023 3.5 Growth Opportunities and Recommendations 4 Research Methodology 4.1 Data Sources 4.1.1 Primary Data Sources 4.1.2 Secondary Data Sources 4.1.3 Data Triangulation 4.2 Market Estimation and Forecast List of Figures Figure 1: Post-Quantum Cryptography Market (by Scenario), $Million, 2023, 2028, and 2034 Figure 2: Post-Quantum Cryptography Market (by Region), $Million, 2023, 2028, and 2034 Figure 3: Europe Post Quantum Cryptography Market (by Security Application), $Million, 2023, 2028, and 2034 Figure 4: Europe Post Quantum Cryptography Market (by End-Use Industry), $Million, 2023, 2028, and 2034 Figure 5: Europe Post-Quantum Cryptography Market (by Solution), $Million, 2023, 2028, and 2034 Figure 6: Europe Post-Quantum Cryptography Market (by Product Type), $Million, 2023, 2027, and 2034 Figure 7: Key Events Figure 8: Supply Chain Analysis for Post-Quantum Cryptography Market Figure 9: Ecosystem of Quantum Technology Figure 10: Patent Filed (by Country), January 2020-September 2024 Figure 11: Patent Filed (by Company), January 2020-September 2024 Figure 12: Investment in Quantum Technology Startups (by Private and Corporate), $Million, 2001-2022 Figure 13: Quantum Technology Startups (by Country), 2022 Figure 14: Impact Analysis of Post-Quantum Cryptography Market Navigating Factors, 2023-2034 Figure 15: Germany Post-Quantum Cryptography Market, $Million, 2023-2034 Figure 16: France Post-Quantum Cryptography Market, $Million, 2023-2034 Figure 17: Italy Post-Quantum Cryptography Market, $Million, 2023-2034 Figure 18: Spain Post-Quantum Cryptography Market, $Million, 2023-2034 Figure 19: U.K. Post-Quantum Cryptography Market, $Million, 2023-2034 Figure 20: Rest-of-Europe Post-Quantum Cryptography Market, $Million, 2023-2034 Figure 21: Strategic Initiatives, January 2020-September 2024 Figure 22: Share of Strategic Initiatives, January 2020-September 2024 Figure 23: Data Triangulation Figure 24: Top-Down and Bottom-Up Approach Figure 25: Assumptions and Limitations List of Tables Table 1: Market Snapshot Table 2: Opportunities across Region Table 3: Competitive Landscape Snapshot Table 4: List of Standards on Post-Quantum Cryptography Market Table 5: Major Initiatives Taken by Countries in the Quantum Technologies Table 6: Major Private Investments in Quantum Technology Startups, 2022 Table 7: Comparison between Major Quantum Technologies Table 8: Recent Status of Quantum Computing Technologies, 2023-2024 Table 9: Major Investments in Quantum Computing Market, 2023-2024 Table 10: Country-wise initiatives in the Post-Quantum Cryptography market Table 11: Instances of Collaboration between Academia, Industry, and Governments in Developing Quantum-Safe Standards for Post-Quantum Cryptography Market Table 12: Post-Quantum Cryptography Market (by Region), $Million, 2023-2034 Table 13: Europe Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 14: Europe Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 15: Europe Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 16: Europe Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 17: Germany Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 18: Germany Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 19: Germany Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 20: Germany Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 21: France Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 22: France Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 23: France Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 24: France Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 25: Italy Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 26: Italy Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 27: Italy Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 28: Italy Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 29: Spain Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 30: Spain Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 31: Spain Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 32: Spain Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 33: U.K. Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 34: U.K. Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 35: U.K. Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 36: U.K. Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 37: Rest-of-Europe Post-Quantum Cryptography Market (by Security Application), $Million, 2023-2034 Table 38: Rest-of-Europe Post-Quantum Cryptography Market (by End-Use Industry), $Million, 2023-2034 Table 39: Rest-of-Europe Post-Quantum Cryptography Market (by Solution), $Million, 2023-2034 Table 40: Rest-of-Europe Post-Quantum Cryptography Market (by Product), $Million, 2023-2034 Table 41: Market Share, 2023 Press Release
According to a premium market intelligence study by BIS Research, the Europe post-quantum cryptography market is projected to reach $5,485.9 million by 2034. The study also highlights that the market is set to witness a CAGR of 42.16% during the forecast period 2024-2034.
The Europe Post-Quantum Cryptography Market: Drivers and Challenges Market Drivers • Quantum computing represents a revolutionary paradigm shift in computation, promising unprecedented processing power and capabilities. As technology advances, the Europe postquantum cryptography market has been witnessing significant growth and development. One of the primary drivers for the post-quantum cryptography market in Europe is the substantial investment in research and innovation by both the public and private sectors. Governments across Europe, along with the European Union, have been allocating significant funding to support quantum computing research initiatives. Market Challenges • The post-quantum cryptography market in Europe faces several challenges as it evolves. A primary issue is the slow adoption of PQC technologies, driven by a lack of awareness among businesses about the imminent threat posed by quantum computing. This delay is compounded by regulatory fragmentation across European countries, making it difficult for companies to implement uniform standards for PQC. Additionally, scalability concerns emerge as PQC algorithms often require higher computational resources, affecting the performance of existing IT infrastructure. USPs of report • Analysis of business drivers and challenges of the Europe Post-Quantum Cryptography Market • Detailed analysis of Post-Quantum Cryptography Market for U.K., Germany, France, Spain, and Italy Analyst’s Perspective Principal Analyst, BIS Research, states, “The post-quantum cryptography market is expected to see substantial growth in the coming years, driven by the urgent need for quantum-resistant security solutions to protect sensitive data. Significant investments from governments and tech companies, as well as regulatory initiatives, have been fueling advancements in this field to prepare for the quantum era. Leading players have been focusing on R&D, strategic collaborations, and acquisitions to expand their expertise and strengthen their market presence. As the demand for resilient encryption technologies grows, the industry is poised for accelerated expansion, underscoring the importance of innovation and security resilience in countering future quantum computing threats. Key Questions Answered in the Report • What are the key drivers and challenges for players in the Europe post-quantum cryptography market from 2023 to 2034? • What are the key offerings of the prominent companies in the Europe post-quantum cryptography market? • Which application and product segments are leading in the Europe post-quantum cryptography market, and which of them are expected to witness high demand growth during 2023-2034?
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