Post -Quantum Cryptography Market

Global Post -Quantum Cryptography Market Share, Size, Trends, Industry Analysis Report, By Solution, By Service, By Organization Size, By Vertical, By Region, Segment Forecast, 2024 - 2031

  • Published Date : 2024-10-22
  • Pages : 100
  • Report Id : 40519
  • Categories : Services

This report provides a comprehensive analysis of the Global Post-quantum cryptography Market, including historical market sizes from 2019 to 2022 and forecasts for 2024 to 2031. The market is estimated to be valued at USD 357 Million in 2023 and is projected to grow to approximately USD 1887.5 Million by 2031, reflecting a compound annual growth rate (CAGR) of 4.2 % during the forecast period. This growth underscores the increasing demand for advanced data management solutions and highlights the importance of technological innovations in the sector.

Post-quantum cryptography refers to a set of cryptographic algorithms designed to secure data against the potential threats posed by quantum computers. Quantum computers, once fully developed, will have the capability to break traditional encryption methods such as RSA, ECC, and other public-key cryptosystems by solving complex mathematical problems exponentially faster than classical computers. Post-quantum cryptography aims to develop new algorithms that are resistant to quantum attacks while maintaining security against classical computational threats. These algorithms typically rely on hard mathematical problems, such as lattice-based, hash-based, or code-based cryptography, that quantum computers cannot efficiently solve. The transition to post-quantum cryptographic systems is critical for protecting sensitive information in fields like finance, government, and healthcare, ensuring long-term data security in a future where quantum computing becomes mainstream.


For the geography segment, regional supply, demand, major players, and price are presented from 2019 to 2031. This report covers the following regions:
North America
Asia-Pacific
Europe
Middle East and Africa
South America

Segments-

By Solution
Quantum-Safe Hardware
Quantum-Resistant Algorithm
Quantum-Safe Cryptographic Libraries
Quantum-Safe VPN, Email Service, and Messaging System
Quantum-Safe Blockchain Solutions
Quantum-Safe Authentication Solutions
Quantum-Resistant Encryption Products

Post-quantum cryptography solutions are diverse, addressing various aspects of data security to protect against future quantum computing threats. Quantum-safe hardware involves devices specifically designed to implement quantum-resistant algorithms at the hardware level, ensuring secure processing and storage of sensitive information. Quantum-resistant algorithms are at the core of post-quantum cryptography, utilizing mathematical structures like lattices, hash functions, or error-correcting codes that remain secure even against the powerful computational abilities of quantum computers. Quantum-safe cryptographic libraries provide developers with a set of pre-built functions and tools to integrate quantum-resistant encryption into applications and systems easily. For secure communication, quantum-safe VPNs, email services, and messaging systems ensure that data transmitted over networks remains confidential and unbreakable, even in the presence of quantum threats. Quantum-safe blockchain solutions are designed to protect distributed ledger technology from quantum attacks that could compromise the integrity of transactions and ownership records. In terms of identity and access control, quantum-safe authentication solutions provide robust methods for verifying user identities without being vulnerable to quantum decryption techniques. Finally, quantum-resistant encryption products offer end-to-end protection for sensitive data, ensuring that encryption keys and methods are resistant to quantum computers' advanced capabilities, preserving the confidentiality of critical information across industries like finance, government, and healthcare. These solutions work together to future-proof cybersecurity in an era where quantum computing will pose new risks to traditional encryption methods.



By Service
Design, Implementation, and Consulting Services
Migration Services
Quantum Risk Assessment

In the realm of post-quantum cryptography, several key services are essential for organizations looking to secure their systems against potential quantum threats. Design, implementation, and consulting services focus on creating tailored cryptographic solutions that integrate quantum-resistant algorithms into existing infrastructure. These services help businesses identify their specific needs, design secure systems, and implement best practices for post-quantum readiness. Migration services assist organizations in transitioning from traditional cryptographic methods to quantum-safe alternatives, ensuring minimal disruption to operations while maintaining security throughout the process. This includes evaluating current systems, updating cryptographic protocols, and providing training for staff. Additionally, quantum risk assessment services evaluate an organizations vulnerability to quantum computing threats, identifying potential weaknesses in their cryptographic frameworks. This proactive approach helps organizations understand the implications of quantum advancements and prioritize investments in post-quantum security measures. Together, these services facilitate a comprehensive strategy for mitigating risks associated with quantum computing, allowing organizations to protect sensitive data and maintain trust with their stakeholders in a rapidly evolving technological landscape.



By Organization Size
SME's
Large Enterprises

Post-quantum cryptography solutions are essential for organizations of all sizes, but their implementation often varies between small and medium-sized enterprises (SMEs) and large enterprises. SMEs may face unique challenges due to limited resources and expertise, making them more reliant on tailored solutions that fit within budget constraints. These organizations typically prioritize cost-effective quantum-safe technologies that can seamlessly integrate into existing systems without requiring extensive overhauls. As awareness of quantum threats grows, SMEs must adopt scalable post-quantum strategies to protect sensitive data, ensuring they remain competitive while safeguarding customer information. In contrast, large enterprises often have more extensive resources and capabilities to invest in comprehensive post-quantum cryptography initiatives. They tend to adopt multi-layered security approaches that encompass the design, implementation, and ongoing management of quantum-safe solutions across their vast networks. Large enterprises may also have dedicated teams focused on research and development, allowing them to stay ahead of emerging quantum threats. With complex infrastructures and diverse operations, these organizations require robust and adaptable solutions to manage risks effectively. Both SMEs and large enterprises must recognize the importance of transitioning to quantum-resistant systems, but their approaches will vary based on their size, resources, and specific security needs.



By Vertical
BFSI
Government & Defence
Healthcare
IT & ITES
Retail & eCommerce
Others

Post-quantum cryptography solutions are increasingly relevant across various verticals, with distinct applications and needs in each sector. In the BFSI (Banking, Financial Services, and Insurance) sector, robust encryption is crucial to protect sensitive financial data and maintain customer trust, making quantum-resistant algorithms a high priority. The government and defense sector must safeguard classified information and national security data against potential quantum attacks, necessitating advanced cryptographic measures. In healthcare, protecting patient records and sensitive health information is paramount, and post-quantum solutions can enhance data security in electronic health systems. The IT and ITES (Information Technology and IT Enabled Services) sectors rely heavily on data security, making them early adopters of quantum-safe technologies to ensure compliance and safeguard intellectual property. Meanwhile, retail and eCommerce businesses handle vast amounts of customer data, including payment information, necessitating strong encryption to prevent breaches and fraud. Other sectors, often referred to as others, encompass industries such as manufacturing, education, and energy, each requiring tailored post-quantum cryptography solutions to address unique security challenges. As the threat of quantum computing looms, these sectors are prioritizing the integration of quantum-safe solutions to ensure long-term data protection and compliance with evolving security standards.


Key Players

NXP Semiconductor (Netherlands)
Thales (France)
AWS (US), IDEMIA (France)
Palo Alto Networks (US)
DigiCert (US)
Kloch (US)
Post- Quantum (UK)
PQ Shield (US)
Entrust (US)
IBM (US)


For the competitor segment, the report includes global key players and some small players. The information for each competitor includes:
Company Profile
Main Business Information
Financial Analysis
Market Share

Please ask for sample pages for the full company list

Base Year: 2023
Historical Data: from 2019 to 2022
Forecast Data: from 2024 to 2031

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TABLE OF CONTENTS

Market Taxonomy
1. Executive Summary
1.1. Market Overview
1.2. Market Analysis and Recommendations
1.3. RA Analysis and Recommendations
2. Market Introduction
2.1. Market Definition
3. Market Background
3.1. Market Overview
3.1.1. Post - quantum Cryptography Outlook
3.1.2. Post - quantum Cryptography Overview
3.2. Macro - Economic Overview
3.2.1. GDP Growth
3.2.2. Retail Industry Growth
3.3. Pricing Analysis
3.4. Challenges related to the adoption of Post - quantum Cryptography
3.5. Regulations of Post - quantum Cryptography
3.6. Forecast Factors: Relevance and Impact
3.7. Market Dynamics
3.7.1. Drivers
3.7.2. Restraints
3.7.3. Opportunity
3.7.4. Trends
3.7.5. SWOT Analysis
4. Market Forecast
4.1. Market Value Projections
4.2. Market Size Projections
4.3. Y - o - Y Projections
4.4. Absolute Opportunity Analysis
5. Global Post - quantum Cryptography Analysis by Solution
5.1. Introduction
5.1.1. Market Value Share Analysis By Solution
5.1.2. Y - o - Y Growth Analysis By Solution
5.2. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Solution
5.3. Market Attractiveness Analysis by Solution
6. Global Post - quantum Cryptography Analysis By Service
6.1. Introduction
6.1.1. Market Value Share Analysis By Service
6.1.2. Y - o - Y Growth Analysis By Service
6.2. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Service
6.3. Market Attractiveness Analysis By Service
7. Market Structure Analysis
7.1. Market Analysis by Tier of Companies
7.2. Market Concentration
8. Competition Analysis
8.1. Competition Dashboard
8.2. Company Profiles (15 Companies)
8.2.1 NXP Semiconductor (Netherlands)
8.2.1.1. Overview
8.2.1.2. Solution Portfolio
8.2.1.3. Financial Overview
8.2.2.Thales (France)
8.2.2.1. Overview
8.2.2.2. Solution Portfolio
8.2.2.3. Financial Overview
8.2.3. AWS (US), IDEMIA (France)
8.2.3.1. Overview
8.2.3.2. Solution Portfolio
8.2.3.3. Financial Overview
8.2.4. Palo Alto Networks (US)
8.2.4.1. Overview
8.2.4.2. Solution Portfolio
8.2.4.3. Financial Overview
8.2.5. DigiCert (US)
8.2.5.1. Overview
8.2.5.2. Solution Portfolio
8.2.5.3. Financial Overview
8.2.6. Kloch (US)
8.2.6.1. Overview
8.2.6.2. Solution Portfolio
8.2.6.3. Financial Overview
8.2.7. Post - Quantum (UK)
8.2.7.1. Overview
8.2.7.2. Solution Portfolio
8.2.7.3. Financial Overview
8.2.8. PQ Shield (US)
8.2.8.1. Overview
8.2.8.2. Solution Portfolio
8.2.8.3. Financial Overview
8.2.9. Entrust (US)
8.2.9.1. Overview
8.2.8.2. Solution Portfolio
8.2.9.3. Financial Overview
8.2.10. IBM (US)
8.2.10.1. Overview
8.2.10.2. Solution Portfolio
8.2.10.3. Financial Overview
8.2.11. Company11
8.2.11.1. Overview
8.2.11.2. Solution Portfolio
8.2.11.3. Financial Overview
8.2.12. Company12
8.2.12.1. Overview
8.2.12.2. Solution Portfolio
8.2.12.3. Financial Overview
8.2.13. Company13
8.2.13.1. Overview
8.2.13.2. Solution Portfolio
8.2.13.3. Financial Overview
8.2.14. Company14
8.2.14.1. Overview
8.2.14.2. Solution Portfolio
8.2.14.3. Financial Overview
8.2.15. Company15
8.2.15.1. Overview
8.2.15.2. Solution Portfolio
8.2.15.3. Financial Overview
9. Global Post - quantum Cryptography Analysis By Region
9.1. Introduction
9.1.1. Market Value Share Analysis By Region
9.1.2. Y - o - Y Growth Analysis By Region
9.2. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Region
9.2.1. North America
9.2.2. Middle East and Africa
9.2.3. South America
9.2.4. Asia - Pacific
9.2.5. Others
9.3. Current Market Size (USD Mn) Forecast 2023 - 2030 By Region
9.3.1. North America
9.3.2. Middle East and Africa
9.3.3. South America
9.3.4. Asia - Pacific
9.3.5. Others
9.4. Market Attractiveness Analysis By Region
10. North America Post - quantum Cryptography Analysis
10.1. Introduction
10.2. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Country
10.2.1. U.S.
10.2.2. Canada
10.2.3. Mexico
10.2.4. Rest of North America
10.3. Current Market Size (USD Mn) Forecast 2023 - 2030 By Country
10.3.1. U.S.
10.3.2. Canada
10.3.3. Mexico
10.3.4. Rest of North America
10.4. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Solution
10.5. Current Market Size (USD Mn) Forecast 2023 - 2030 By Solution
10.6. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Service
10.7. Current Market Size (USD Mn) Forecast 2023 - 2030 By Service
11. South America Post - quantum Cryptography Analysis
11.1. Introduction
11.2. Regional Pricing Analysis
11.3. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Country
11.3.1. Brazil
11.3.2. Argentina
11.3.3. Rest of South America
11.4. Current Market Size (USD Mn) Forecast 2023 - 2030 By Country
11.4.1. Brazil
11.4.2. Argentina
11.4.3. Rest of South America
11.5. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Solution
11.6. Current Market Size (USD Mn) Forecast 2023 - 2030 By Solution
11.7. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Service
11.8. Current Market Size (USD Mn) Forecast 2023 - 2030 By Service
12. Europe Post - quantum Cryptography Analysis
12.1. Introduction
12.2. Regional Pricing Analysis
12.3. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Country
12.3.1. Germany
12.3.2. Italy
12.3.3. France
12.3.4. Spain
12.3.5. U.K.
12.3.6. Rest of Europe
12.4. Current Market Size (USD Mn) Forecast 2023 - 2030 By Country
12.4.1. Germany
12.4.2. Italy
12.4.3. France
12.4.4. Spain
12.4.5. U.K.
12.4.6. Rest of Europe
12.5. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Solution
12.6. Current Market Size (USD Mn) Forecast 2023 - 2030 By Solution
12.7. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Service
12.8. Current Market Size (USD Mn) Forecast 2023 - 2030 By Service
13. Middle East and Africa Post - quantum Cryptography Analysis
13.1. Introduction
13.2. Regional Pricing Analysis
13.3. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Country
13.3.1. Saudi Arabia
13.3.2. U.A.E.
13.3.3. South Africa
13.3.4. Turkey
13.3.5. Rest of Middle East and Africa
13.4. Current Market Size (USD Mn) Forecast 2023 - 2030 By Country
13.4.1. Saudi Arabia
13.4.2. U.A.E.
13.4.3. South Africa
13.4.4. Turkey
13.4.5. Rest of Middle East and Africa
14. Asia - Pacific Post - quantum Cryptography Analysis
14.1. Introduction
14.2. Regional Pricing Analysis
14.3. Historical Market Size (USD Mn) Analysis 2018 - 2022 By Country
14.3.1. China
14.3.2. India
14.3.3. Japan
14.3.4. South Korea
14.3.5. Singapore
14.3.6. Australia and New Zealand
14.3.7. Rest of Asia - Pacific
14.4. Current Market Size (USD Mn) Forecast 2023 - 2030 By Country
14.4.1. China
14.4.2. India
14.4.3. Japan
14.4.4. South Korea
14.4.5. Singapore
14.4.6. Australia and New Zealand
14.4.7. Rest of Asia - Pacific
i. Research Methodology
ii. Assumptions & Acronyms


LIST OF FIGURES

Figure 01: Global Molecular Methods For Food Safety Testing, BPS Analysis, By Solution, 2018(H), 2023(E) & 2030(F)
Figure 02: Global Molecular Methods For Food Safety Testing, Y - O - Y Growth, By Solution, 2020(A) - 2030(F)
Figure 03: Global Post - quantum Cryptography Attractiveness Analysis, By Solution (2020)
Figure 04: Global Molecular Methods For Food Safety Testing, BPS Analysis, By Service , 2018(H), 2023(E) & 2030(F)
Figure 05: Global Molecular Methods For Food Safety Testing, Y - O - Y Growth, By Service , 2018(H) - 2030(F)
Figure 06: Global Post - quantum Cryptography Attractiveness Analysis, By Service
Figure 07: Global Molecular Methods For Food Safety Testing, Value Analysis, By Solution, 2018(H) - 2030(F)
Figure 08: Global Molecular Methods For Food Safety Testing, Value Analysis, by Service , 2018(H) - 2030(F)
Figure 09: Global Molecular Methods For Food Safety Testing, BPS Analysis, by Region, 2018(H), 2023(E) & 2030(F)
Figure 10: Global Molecular Methods For Food Safety Testing, Y - O - Y Growth, by Region, 2018(H) - 2030(F)
Figure 11: Global Post - quantum Cryptography Attractiveness Analysis, by Region
Figure 12: North America Post - quantum Cryptography Value (USD Mn Forecast, 2018 2022
Figure 13: North America Post - quantum Cryptography Value (USD Mn Forecast, 2023 2030
Figure 14: South America Post - quantum Cryptography Value (USD Mn) Forecast, 2018 2022
Figure 15: South America Post - quantum Cryptography Value (USD Mn) Forecast, 2023 2030
Figure 16: Europe Post - quantum Cryptography Value (USD Mn) Forecast, 2018 2022
Figure 17: Europe Post - quantum Cryptography Value (USD Mn) Forecast, 2023 2030
Figure 18: Middle East and Africa Post - quantum Cryptography Value (USD Mn) Forecast, 2018 2022

LIST OF TABLES

Table 01: Global Post - quantum Cryptography Value (USD Mn) Forecast, By Solution, 2018(H) 2030(F)
Table 02: Global Post - quantum Cryptography Value (USD Mn) Forecast, By Service , 2018(H) 2030(F)
Table 03: Global Post - quantum Cryptography Value (USD Mn) Forecast, By Country, 2018(H) 2030(F)
Table 04: North America Post - quantum Cryptography Value (USD Mn) Forecast, by Country, 2018(H) 2030(F)
Table 05: North America Post - quantum Cryptography Value (USD Mn) Forecast, By Solution, 2018(H) 2030(F)
Table 06: North America Post - quantum Cryptography Value (USD Mn) Forecast, By Service , 2018(H) 2030(F)
Table 07: South America Post - quantum Cryptography Value (USD Mn) Forecast, By Country, 2018(H) 2030(F)
Table 08: South America Post - quantum Cryptography Value (USD Mn) Forecast, By Solution, 2018(H) 2030(F)
Table 09: South America Post - quantum Cryptography Value (USD Mn) Forecast, By Service , 2018(H) 2030(F)
Table 10: Europe Post - quantum Cryptography Value (USD Mn) and Forecast, by Country, 2018(H) 2030(F)
Table 11: Europe Post - quantum Cryptography Value (USD Mn) Forecast, By Solution, 2018(H) 2030(F)
Table 12: Europe Post - quantum Cryptography Value (USD Mn) Forecast, By Service End - user, 2018(H) 2030(F)
Table 13: Middle East and Africa Post - quantum Cryptography Value (USD Mn) Forecast, By Country, 2018(H) 2030(F)
Table 14: Middle East and Africa Post - quantum Cryptography Value (USD Mn) Forecast, By Solution, 2018(H) 2030(F)
Table 15: Middle East and Africa Post - quantum Cryptography Value (USD Mn) Forecast, By Service , 2018(H) 2030(F)
Table 16: Asia - Pacific Post - quantum Cryptography Value (USD Mn) Forecast, by Country, 2018(H) 2030(F)
Table 17: Asia - Pacific Post - quantum Cryptography Value (USD Mn) Forecast, By Solution, 2018(H) 2030(F)
Table 18: Asia - Pacific Post - quantum Cryptography Value (USD Mn) Forecast, By Service , 2018(H) 2030(F)

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