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Post-Quantum Cryptography (Kyber)×타원 곡선 암호×격자 기반 암호×
분야암호학암호학암호학
계열Machine learningMachine learningMachine learning
기원 연도202219851996
창시자NIST PQC Standardization ProjectNeal KoblitzMiklós Ajtai
유형post-quantum key encapsulation mechanismasymmetric encryption and key agreementpublic-key cryptosystem based on lattice hardness
원전Avanzi, R., Bos, J., Ducas, L., & Kiltz, E. (2022). CRYSTALS-Kyber algorithm specification and supporting documentation. NIST Post-Quantum Cryptography Project. link ↗Miller, V. S. (1985). Use of Elliptic Curves in Cryptography. In Proceedings of the Advances in Cryptology - CRYPTO 1985, LNCS 218, pp. 417-426. DOI ↗Ajtai, M. (1996). Generating hard instances of the short basis problem. In Proceedings of the 28th Annual ACM Symposium on Theory of Computing, pp. 99-108. link ↗
별칭PQC, quantum-resistant cryptography, quantum-safeECC, elliptic curve cryptosystemlattice cryptography, post-quantum lattice cryptography
관련333
요약Post-quantum cryptography comprises cryptographic algorithms believed to be secure against both classical and quantum computers. In 2022, NIST standardized post-quantum algorithms including ML-KEM (CRYSTALS-Kyber) for key encapsulation and ML-DSA (CRYSTALS-Dilithium) for signatures. Post-quantum cryptography is essential for systems requiring long-term confidentiality, as adversaries may record encrypted communications today and decrypt them once quantum computers become available.Elliptic Curve Cryptography (ECC) is a public-key cryptosystem based on the algebraic structure of elliptic curves over finite fields. Proposed independently by Neal Koblitz and Victor Miller in 1985, ECC offers equivalent security to RSA with much smaller key sizes. Modern cryptography increasingly favors ECC for its efficiency: a 256-bit ECC key provides security comparable to a 2048-bit RSA key, making it ideal for constrained environments and high-performance systems.Lattice-based cryptography is a class of cryptosystems whose security is derived from the computational hardness of lattice problems, particularly the shortest vector problem (SVP) and learning with errors (LWE). First proposed by Miklós Ajtai in 1996, lattice-based approaches have gained prominence as the leading candidates for post-quantum cryptography. Unlike RSA and ECC, which are vulnerable to quantum computers, lattice problems are believed to remain hard even against quantum algorithms.
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ScholarGate방법 비교: Post-Quantum Cryptography (Kyber) · Elliptic Curve Cryptography · Lattice-Based Cryptography. 2026-06-18에 다음에서 검색함: https://scholargate.app/ko/compare