Certifying quantumness beyond steering and nonlocality and its implications on quantum information processing

C. Jebarathinam, D. Das
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引用次数: 2

Abstract

Superunsteerability is a particular kind of spatial quantum correlation that can be observed in a steering scenario in the presence of limited shared randomness. In this work, we define an experimentally measurable quantity in a steering scenario to certify superunsteerability. In the context of certification of randomness with this scenario, we demonstrate that such certification of superunsteerability provides a bound on the amount of genuine randomness generation. On the other hand, superlocality is another kind of spatial quantum correlation that can be observed in a Bell scenario in the presence of limited shared randomness. We identify inequalities to certify superlocality in the Bell scenarios that can be adopted to implement $2$-to-$1$ and $3$-to-$1$ random-access codes. We observe that such certification of superlocality acts as resource for the random-access codes in the presence of limited shared randomness. As a by-product of our certification of superunsteerability and superlocality, we identify a new classification of separable states having quantumness.
超越方向性和非定域性的量子证明及其对量子信息处理的影响
超不可方向性是一种特殊的空间量子相关性,可以在有限共享随机性存在的转向场景中观察到。在这项工作中,我们在转向场景中定义了一个实验可测量的量来证明超不可转向性。在这种情况下的随机性认证的背景下,我们证明了这种超不可操控性的认证提供了真正随机性生成量的界限。另一方面,超局部性是另一种空间量子相关,可以在有限共享随机性存在的贝尔情景中观察到。我们确定了Bell场景中的不等式以证明可用于实现$2$到$1$和$3$到$1$随机访问码的叠加性。我们观察到,在有限共享随机性存在的情况下,这种叠加性证明可以作为随机访问码的资源。作为我们证明超不方向性和超局部性的副产品,我们确定了具有量子性的可分离态的新分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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