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Realistic noise-tolerant randomness amplification using finite number of devices

机译:使用有限数量的设备实现现实的耐噪声随机性放大

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摘要

Randomness is a fundamental concept, with implications from security of modern data systems, to fundamental laws of nature and even the philosophy of science. Randomness is called certified if it describes events that cannot be pre-determined by an external adversary. It is known that weak certified randomness can be amplified to nearly ideal randomness using quantum-mechanical systems. However, so far, it was unclear whether randomness amplification is a realistic task, as the existing proposals either do not tolerate noise or require an unbounded number of different devices. Here we provide an error-tolerant protocol using a finite number of devices for amplifying arbitrary weak randomness into nearly perfect random bits, which are secure against a no-signalling adversary. The correctness of the protocol is assessed by violating a Bell inequality, with the degree of violation determining the noise tolerance threshold. An experimental realization of the protocol is within reach of current technology.
机译:随机性是一个基本概念,涉及现代数据系统的安全性,自然的基本定律甚至科学哲学。如果随机性描述的事件不能由外部对手预先确定,则称为随机性。众所周知,可以使用量子力学系统将弱的认证随机性放大到接近理想的随机性。然而,到目前为止,尚不清楚随机性放大是否是现实的任务,因为现有建议要么不能容忍噪声,要么需要无数数量的不同设备。在这里,我们提供了一种使用有限数量的设备的容错协议,用于将任意弱随机性放大为近乎完美的随机比特,从而可以抵御无信号攻击的对手。通过违反贝尔不等式来评估协议的正确性,违反程度决定了噪声容限阈值。该协议的实验实现在当前技术的范围内。

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