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A generator for unique quantum random numbers based on vacuum states

机译:基于真空状态的唯一量子随机数生成器

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摘要

Random numbers are a valuable component in diverse applications that range from simulations~1 over gambling to cryptography~(2,3). The quest for true randomness in these applications has engendered a large variety of different proposals for producing random numbers based on the foundational unpredictability of quantum mechanics~(4-11). However, most approaches do not consider that a potential adversary could have knowledge about the generated numbers, so the numbers are not verifiably random and unique ~(12-15). Here we present a simple experimental setup based on homodyne measurements that uses the purity of a continuous-variable quantum vacuum state to generate unique random numbers. We use the intrinsic randomness in measuring the quadratures of a mode in the lowest energy vacuum state, which cannot be correlated to any other state. The simplicity of our source, combined with its verifiably unique randomness, are important attributes for achieving high-reliability, high-speed and lowcost quantum random number generators.
机译:随机数是各种应用中的重要组成部分,其范围从模拟〜赌博到加密〜(2,3)。在这些应用中对真正随机性的追求引发了各种各样的基于量子力学的基本不可预测性来产生随机数的建议[4-11]。但是,大多数方法并不认为潜在的对手可能具有有关生成的数字的知识,因此这些数字不是可验证的随机且唯一的(12-15)。在这里,我们介绍基于零差测量的简单实验设置,该测量使用连续可变量子真空状态的纯度来生成唯一的随机数。我们使用固有随机性来测量处于最低能量真空状态下的模式的正交,该正交不能与任何其他状态相关。源的简单性及其可验证的独特随机性是实现高可靠性,高速和低成本量子随机数发生器的重要属性。

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