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首页> 外文期刊>Physical Review, A >Upper bound on certifiable randomness from a quantum black-box device
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Upper bound on certifiable randomness from a quantum black-box device

机译:来自Quantum黑盒设备的可认证随机性的上限

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摘要

Quantum theory allows for randomness generation in a device-independent setting, where no detailed description of the experimental device is required. Here we derive a general upper bound on the amount of randomness that can be certified in such a setting. Our bound applies to any black-box scenario, thus covering a wide range of scenarios from partially characterized to completely uncharacterized devices. Specifically, we prove that the number of random bits that can be certified is limited by the number of different input states that enter the measurement device. We show explicitly that our bound is tight in the simplest cases. More generally, our paper indicates that the prospects of certifying a large amount of randomness by using high-dimensional (or even continuous variable) systems will be extremely challenging in practice.
机译:量子理论允许在无关的装置中进行随机性产生,其中不需要对实验装置的详细描述。 在这里,我们可以在这种设置中获得可随机性的一般上限。 我们的界限适用于任何黑匣子场景,从而覆盖各种方案,部分特征是完全无表征的设备。 具体地,我们证明可以认证的随机比特数由输入测量设备的不同输入状态的数量受限。 我们明确地显示了我们的界限在最简单的情况下。 更一般地,我们的论文表明,通过使用高维(甚至连续变量)系统认证大量随机性的前景将在实践中非常具有挑战性。

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