量子密码学密钥分配

B. Chander
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引用次数: 1

摘要

量子密码学是通过执行量子物理环境来保护交易的行为。最新的密码学将安全性建立在将巨大的数字分割成相关素数的原始能力之上;然而,随着当前数学的发展,机器计算能力的不断提高,它的缺点是不方便。在所有的争议中,密钥分配是经典密码学中最重要的问题。量子密码学通过提供具有大气规则的明确保护声明来赋予秘密通信。将量子力学应用到密码学中可以扩大不受限制、不间断的信息传输。本章描述了经典密码学的当代状态,以及量子密码学的基础、量子协议密钥分发、实现标准、量子协议套件、抗量子密码学和大规模量子密钥挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum Cryptography Key Distribution
Quantum cryptography is actions to protect transactions through executing the circumstance of quantum physics. Up-to-the-minute cryptography builds security over the primitive ability of fragmenting enormous numbers into relevant primes; however, it features inconvenience with ever-increasing machine computing power along with current mathematical evolution. Among all the disputes, key distribution is the most important trouble in classical cryptography. Quantum cryptography endows with clandestine communication by means of offering a definitive protection statement with the rule of the atmosphere. Exploit quantum mechanics to cryptography can be enlarging unrestricted, unfailing information transmission. This chapter describes the contemporary state of classical cryptography along with the fundamentals of quantum cryptography, quantum protocol key distribution, implementation criteria, quantum protocol suite, quantum resistant cryptography, and large-scale quantum key challenges.
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