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首页> 外文期刊>Proceedings of the IEEE >Quantum information processing: cryptography, computation, and teleportation
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Quantum information processing: cryptography, computation, and teleportation

机译:量子信息处理:密码,计算和传送

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Present information technology is based on the laws of classical physics. However, advances in quantum physics have stimulated interest in its potential impact on such technology. This article is an introductory review of three aspects of quantum information processing, cryptography, computation, and teleportation. The author serves up hors d'oeuvres on the relevant parts of quantum physics and the sorts of quantum systems which might form the building blocks for quantum processors. Quantum cryptography utilizes states of individual quantum systems for the transfer of conventional classical bits of information. The impossibility of measuring quantum systems without disturbing them guarantees the detection of eavesdropping and hence secure information transfer is possible. In a sense, teleportation is the inverse of cryptography, using more robust classical bits to faithfully transfer a quantum state through a noisy environment. Quantum computation utilizes the evolving quantum state of a complex system, which consists of many interacting individuals. If such a machine could be built, it would be capable of solving some problems which are intractable on any conventional computer; he illustrates this with Shor's (see Proc. 35th IEEE Symposium on Foundations of Computer Science, p.124, 1994) quantum factoring algorithm. Details are given of the current experimental achievements, proposals, and prospects for the future and of the patents granted to date.
机译:当前的信息技术是基于经典物理学定律的。但是,量子物理学的进步激发了人们对其潜在影响的兴趣。本文是对量子信息处理,密码学,计算和远程传送三个方面的介绍性综述。作者在量子物理学的相关部分以及可能构成量子处理器构建模块的各种量子系统上提供了丰富的经验。量子密码学利用各个量子系统的状态来传输传统的经典信息位。不可能在不干扰量子系统的情况下进行测量,从而确保了对窃听的检测,因此可以进行安全的信息传输。从某种意义上讲,隐形传态是密码学的逆过程,它使用更鲁棒的经典位通过嘈杂的环境忠实地传递量子态。量子计算利用复杂系统的演化量子态,该系统由许多相互作用的个体组成。如果可以建造这样的机器,它将能够解决某些常规计算机难以解决的问题;他用Shor的量子分解算法(见Proc。35th IEEE Symposium on Computers Foundations,p.124,1994)对此进行了说明。详细介绍了当前的实验成果,建议和对未来的展望以及迄今为止授予的专利。

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