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Experimental device-independent certified randomness generation with an instrumental causal structure

机译:实验装置独立的经认证随机性产生,具有乐器的因果结构

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The intrinsic random nature of quantum physics offers novel tools for the generation of random numbers, a central challenge for a plethora of fields. Bell non-local correlations obtained by measurements on entangled states allow for the generation of bit strings whose randomness is guaranteed in a device-independent manner, i.e. without assumptions on the measurement and state-generation devices. Here, we generate this strong form of certified randomness on a new platform: the so-called instrumental scenario, which is central to the field of causal inference. First, we theoretically show that certified random bits, private against general quantum adversaries, can be extracted exploiting device-independent quantum instrumental-inequality violations. Then, we experimentally implement the corresponding randomness-generation protocol using entangled photons and active feed-forward of information. Moreover, we show that, for low levels of noise, our protocol offers an advantage over the simplest Bell-nonlocality protocol based on the Clauser-Horn-Shimony-Holt inequality. Random number generation has applications spanning several sectors, from scientific research to cryptography, with the intrinsic random nature of quantum physics allows to obtain truly random sequences. The authors present a proof-of principle implementation of a device-independent random number generator protocol, whose effectiveness is certified by quantum instrumental correlations, which also ensures privacy with respect to any quantum adversarial attack.
机译:量子物理的内在随机性质为一代随机数提供了新颖的工具,这是一种普遍的田间的中央挑战。通过对缠绕状态的测量获得的贝尔非本地相关性允许生成以无关方式保证随机性的比特串,即,没有对测量和状态生成设备的假设。在这里,我们在新平台上生成这种强烈的经过认证的随机性:所谓的乐器场景,这是因果推断领域的核心。首先,理论上表明,可以提取私有量子对抗一般量子对手的经过认证的随机比特,可以提取利用无关的量子仪器 - 不等式违规。然后,我们通过缠结的光子和信息的有源前馈来实验地实现相应的随机性生成协议。此外,我们表明,对于低水平的噪声,我们的协议基于基于克劳斯喇叭 - 霍尔霍尔特不等式的最简单的响铃非光性协议提供了优势。随机数生成具有跨越几个部门的应用,从科学研究到加密,Quantum物理的内在随机性质允许获得真正随机序列。作者呈现了一种独立于无关的随机数发生器协议的原理原理实施,其有效性由量子仪器相关性认证,这也确保了关于任何量子对抗攻击的隐私。

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