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Spacelike transmission of classical information in hypotheticalpseudorandom physics in idealized setups with a split photon pulse

机译:在理想的设置中,利用分离的光子脉冲,在假设的伪随机物理学中对经典信息进行空位传输

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摘要

Complexity theory suggests that it is conceivable that there exists a pseudorandomnumber generator within quantum processes. Assuming existence of an appropriate pseudorandomnumber generator within quantum processes, it was shown in a previous study that superluminaltransmission of classical bits could emerge theoretically using Einstein–Podolsky–Rosen (EPR)pairs. Assumptions were made in that study. One assumption was that appropriate measurementsconducted at neighboring particles of the mentioned parallel EPR pairs yield results which arecomputed from successive output bits of the hypothetical pseudorandom number generator. Thequestion arises whether or not this assumption, which may be an implausible assumption, can beskipped. In the present article, a positive answer is given to this question. Various idealized setupsare described which do not need any EPR pair but which use an appropriate split pulse of photonsdirectly.
机译:复杂性理论表明,可以想象在量子过程中存在一个伪随机数生成器。假设在量子过程中存在适当的伪随机数生成器,先前的研究表明,使用爱因斯坦-波多尔斯基-罗森(EPR)对在理论上可以出现经典位的超腔传输。在这项研究中进行了假设。一个假设是,在提到的并行EPR对的相邻粒子上进行的适当测量会产生结果,这些结果是从假设的伪随机数生成器的连续输出位计算得出的。提出的问题是,是否可以忽略这个可能是不切实际的假设的假设。在本文中,对此问题给出了肯定的答案。描述了各种理想设置,这些设置不需要任何EPR对,而是直接使用适当的光子分裂脉冲。

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