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Analog of the Clauser–Horne–Shimony–Holt inequality for steering

机译:Clauser-Horne-Shimony-Holt不等式的转向模拟

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摘要

The Clauser–Horne–Shimony–Holt (CHSH) inequality and its permutations are necessary and sufficient criteria for Bell nonlocality in the simplest Bell-nonlocality scenario: two parties, two measurements per party and two outcomes per measurement. Here we derive an inequality for Einstein–Podolsky–Rosen (EPR)-steering that is an analog of the CHSH, in that it is necessary and sufficient in this same scenario. However, since in the case of steering the device at Bob’s site must be specified (as opposed to the Bell case, in which it is a black box), the scenario we consider is that where Alice performs two (black-box) dichotomic measurements, and Bob performs two mutually unbiased qubit measurements. We show that this inequality is strictly weaker than the CHSH, as expected, and use it to decide whether a recent experiment [Phys. Rev. Lett. 110, 130401 (2013) [CrossRef] ] involving a single-photon split between two parties has demonstrated EPR-steering.
机译:在最简单的贝尔非本地化场景中,对于贝尔非本地化而言,Clauser-Horne-Shimony-Holt(CHSH)不等式及其排列是必要和充分的标准:两个参与方,每个参与方两个度量,每个度量两个结果。在这里,我们得出了爱因斯坦-波多尔斯基-罗森(EPR)转向的不等式,它类似于CHSH,因为在这种情况下这是必要且充分的。但是,由于必须指定在Bob现场操纵设备的情况(与Bell情况相反,后者是黑匣子),因此我们考虑的场景是Alice执行两次(黑匣子)二分法测量,鲍勃执行两个相互无偏的量子位测量。我们证明,这个不等式比预期的严格要弱于CHSH,并用它来决定是否进行最近的实验[Phys。牧师110,130401(2013)[CrossRef]]涉及到在两方之间的单光子分裂,已经证明了EPR转向。

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