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Security of Semi-Device-Independent Random Number Expansion Protocols

机译:半设备独立随机数扩展协议的安全性

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摘要

Semi-device-independent random number expansion (SDI-RNE) protocols require some truly random numbers to generate fresh ones, with making no assumptions on the internal working of quantum devices except for the dimension of the Hilbert space. The generated randomness is certified by non-classical correlation in the prepare-and-measure test. Until now, the analytical relations between the amount of the generated randomness and the degree of non-classical correlation, which are crucial for evaluating the security of SDI-RNE protocols, are not clear under both the ideal condition and the practical one. In the paper, first, we give the analytical relation between the above two factors under the ideal condition. As well, we derive the analytical relation under the practical conditions, where devices’ behavior is not independent and identical in each round and there exists deviation in estimating the non-classical behavior of devices. Furthermore, we choose a different randomness extractor (i.e., two-universal random function) and give the security proof.
机译:半设备无关的随机数扩展(SDI-RNE)协议需要一些真正随机数来产生新鲜的数字,并且在除了希尔伯特空间的尺寸之外,没有对量子设备的内部工作的假设。所生成的随机性通过准备测试中的非经典相关认证。到目前为止,对于评估SDI-RNE协议的安全性是至关重要的产生随机性和非经典相关程度之间的分析关系,在理想条件和实际情况下,不明确。在本文中,首先,我们在理想条件下给出了上述两个因素之间的分析关系。同样,我们在实际条件下得出了分析关系,其中设备的行为在每轮中不合适,并且在每轮中具有相同,并且存在估计设备的非经典行为的偏差。此外,我们选择不同的随机性提取器(即,两个通用随机函数)并提供安全证明。

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