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Post Quantum Computing Market size is expected to be worth around USD 10,035 Million

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The Global Post Quantum Computing Market size is expected to be worth around USD 10,035 Million By 2034, from USD 284.6 Million in 2024, growing at a CAGR of 42.80% during the forecast period from 2025 to 2034. In 2024, North America held over 40% of the market, generating USD 113 million in revenue. The U.S. market was valued at USD 107.6 million and is expected to grow at a CAGR of 40.3% during the forecast period.

Read more - https://market.us/report/post-quantum-computing-market/

The Post Quantum Computing Market refers to the industry focused on developing and implementing cryptographic solutions designed to resist attacks from quantum computers, which could potentially break traditional encryption methods like RSA and ECC. It involves advanced algorithms such as lattice-based, hash-based, and multivariate cryptography to secure data across sectors like finance, healthcare, and government. This market is driven by the urgent need to protect sensitive information from future quantum threats, ensuring long-term cybersecurity resilience. As quantum computing advances, organizations are prioritizing these solutions to safeguard digital infrastructure and maintain trust in secure communications.
 
The Post Quantum Computing Market is experiencing rapid growth due to increasing awareness of quantum computing’s potential to disrupt conventional encryption systems. Valued at around USD one billion in recent estimates, it is projected to grow significantly, with some forecasts suggesting a valuation of USD seventeen billion by the next decade, driven by a robust compound annual growth rate. The market encompasses solutions for network security, secure communications, and digital transactions, with North America leading due to heavy investments in cybersecurity. This expansion reflects the critical need for quantum-resistant technologies to protect data in a quantum future.
 
Top driving factors for the Post Quantum Computing Market include the rising threat of quantum computers capable of cracking traditional encryption, pushing organizations to adopt quantum-safe solutions. Growing cybersecurity concerns, especially in finance and defense, fuel demand for advanced cryptographic systems. Government initiatives, like the U.S. National Institute of Standards and Technology’s standards for quantum-resistant algorithms, encourage adoption. Additionally, the increasing volume of sensitive data from IoT and 5G technologies amplifies the need for robust security, making post-quantum cryptography a priority for future-proofing digital ecosystems.
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