SafeLogic today announced the immediate availability of CryptoComply Go v4.0 featuring comprehensive post-quantum cryptography (PQC ...
It’ll still be a while before quantum computers become powerful enough to do anything useful, but it’s increasingly likely that we will see full-scale, error-corrected quantum computers become ...
Quantum computing technology is developing rapidly, promising to solve many of society’s most intractable problems. However, as researchers race to build quantum computers that would operate in ...
International Business Machines Corporation IBM recently announced that two of its developed algorithms have been formally incorporated into the world’s first post-quantum cryptography standards, ...
Three NIST-approved encryption algorithms set the stage for establishing PQC strategies, which — despite quantum computing’s infancy — CISOs should begin launching given the attack techniques and ...
After years of review, the National Institute of Standards and Technology has chosen three encryption algorithms as the basis for its post-quantum security strategy. After years of review, the ...
A view of NIST headquarters in Gaithersburg, Md. (Photo credit: NIST) The National Institute of Standards and Technology announced an algorithm that could serve as a second line of defense to ensure ...
Castle Shield has integrated two of the NIST Round 3 finalists PQC asymmetric encryption. NIST will select a small subset of these algorithms that will form the core of the first post-quantum ...
11don MSN
Why Vitalik believes quantum computing could break Ethereum’s cryptography sooner than expected
Key takeawaysButerin sees a nontrivial 20% chance that quantum computers could break current cryptography before 2030, and he argues that Ethereum should begin preparing for that possibility.A key ...
YORKTOWN HEIGHTS, N.Y., Aug. 13, 2024 — Two IBM-developed algorithms have been formalized within the world’s first three post-quantum cryptography standards, which were published today by the U.S.
Results that may be inaccessible to you are currently showing.
Hide inaccessible results