量子密码学 ( Quantum Cryptography )是一门很有前程的新范畴,很多国度的职员都在研讨它,而且在必定的范畴内进行了实验。离实际利用只有一段不很长的间隔。
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以量子物理为基础的量子密码术(Quantum Cryptography,Qc)是量子力学和信息理论的交叉学科,它依靠物理原理 安全地生成密钥,并以产生的密码来加密和解密明文,从而...
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论量子密码与量子通信-信息安全 关键词: 量子;纠缠态;量子密码;金钥分配;量子通信 [gap=552]keywords: quantum;entangled state;quantum cryptography;qkd;quantum communication
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Quantum Cryptography Communication 量子密码通信
Post-quantum cryptography 后量子密码
Post Quantum Cryptography 后量子密码 ; 后量子密码学
Study on fiber quantum cryptography 光纤量子密码术研究
quantum cryptography qc 量子密码通信
Quantum cryptography can in principle offer the unconditionally secure private communication.
量子密码在理论上提供了绝对安全的保密通信。
参考来源 - 量子密码通信中暗计数对误码率的影响Quantum cryptography can in principle offer the unconditionally secure private communication.
量子密码在理论上提供了绝对安全的保密通信。
参考来源 - 量子密码通信中暗计数对误码率的影响·2,447,543篇论文数据,部分数据来源于NoteExpress
以上来源于: WordNet
N a method of coding information based on quantum mechanics, which is said to be unbreakable 量子加密术
Computing: Quantum cryptography is unbreakable in theory.
计算:量子密码理论上是无法破解的。
Such a photon counter is essential if quantum cryptography is to work, because it will allow what are known as quantum Repeaters to be built.
如果量子密码开始工作,这样的光子计数器是必不可少的,因为这样一来将可以使用量子中继器。
Computing: Quantum cryptography is unbreakable in theory. But like any security system, in practice it is only as safe as its weakest link.
计算:量子密码理论上是无法破解的。但和任何安全系统一样,在实践中其安全度取决于系统里最薄弱的一环。
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