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- Enabling a Smooth Migration Towards Post-Quantum Security . . . - Springer
Once a user has made a transaction with his her Ethereum wallet, a quantum attacker is able to recover the user’s private key using Shor’s algorithm [15] and steal all the assets from the user’s wallet As a result, migrating Ethereum towards post-quantum security is a critical step for protecting users’ crypto assets in the near future
- STMicroelectronics reveals solutions for post-quantum cryptography . . .
The post-quantum cryptographic assets ST is announcing today are ready to use, empowering customers to bring quantum resistance to critical security features of their products like firmware update, secure boot, and authentication mechanisms
- Post-Quantum Cryptography (PQC) | Crypto-Agility
QuSecure provides a post-quantum cryptography software solution with cryptographic agility, controls, and insights
- Post-quantum Privacy-Preserving Aggregation in Federated . . . - Springer
With the fast growth of quantum computers in recent years, the use of post-quantum cryptography has steadily become vital In the privacy-preserving aggregation of federated learning, different crypto-graphic primitives, such as encryption, key agreement, digital signature, secret-sharing, and pseudorandom generator, may be used to protect
- AWS Outlines Its Post-Quantum Cryptography Migration Plan
In a recent article on its security blog, AWS detailed its plan for migrating to post-quantum cryptography (PQC) The article addresses the challenges posed by PQC, outlines AWS's current progress
- Eurofiber, Quantum Bridge Juniper Networks Unite for Quantum-Safe . . .
A steady increase in cyber threats and evolving global regulatory requirements are driving a surge in demand for quantum-safe encryption Eurofiber is addressing these needs by partnering with Juniper Networks and Quantum Bridge to integrate advanced post-quantum cryptography into its extensive network infrastructure
- Fast and Post-Quantum Authentication for Real-time Next Generation . . .
With the rise of quantum computers breaking conventional intractability problems, these traditional cryptosystems must be replaced with post-quantum (PQ) secure ones However, PQ-secure signatures are significantly costlier than their conventional counterparts, vastly exacerbating delay hurdles for real-time applications
- Post-quantum Privacy-Preserving Aggregation in Federated . . . - Springer
With the fast growth of quantum computers in recent years, the use of post-quantum cryptography has steadily become vital In the privacy-preserving aggregation of federated learning, different cryptographic primitives, such as encryption, key agreement, digital
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