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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Analysis of a proposal for a realistic loophole-free Bell test with atom-light entanglement
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Analysis of a proposal for a realistic loophole-free Bell test with atom-light entanglement

机译:原子光纠缠的无贝尔贝尔漏洞测试方案的分析

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The violation of Bell inequalities where both detection and locality loopholes are closed is crucial for deviceindependent assessments of quantum information. While of a technological nature, the simultaneous closing of both loopholes still remains a challenge. In Teo et al. [Nat.Commun. 4, 2104 (2013)], a realistic setup to produce an atom-photon entangled state that could reach a loophole-free Bell inequality violationwithin current experimental technology is proposed. Herewe improve the analysis of this proposal by giving an analytical treatment that shows that the state proposed in Teo et al. [Nat. Commun. 4, 2104 (2013)] can violate a Bell inequality for arbitrarily low photodectection efficiency, when all other losses are ignored. Moreover, it is also able to violate a Bell inequality considering only atomic and homodyne measurements eliminating the need to consider inefficient photocounting measurements. In this case, the maximum Clauser-Horne-Shimony-Holt inequality violation achievable is 2.29, and the minimum transmission required for violation is about 68%. Finally, we show that by postselecting on an atomic measurement, one can engineer superpositions of coherent states for various coherent state amplitudes.
机译:在检测和位置漏洞均被封闭的情况下,违反贝尔不等式的行为对于量子信息的设备无关评估至关重要。尽管具有技术性,但同时封闭两个漏洞仍然是一个挑战。在Teo等人中。 [Nat.Commun。 [4,2104(2013)],提出了一种在当前实验技术中产生可能达到无漏洞的Bell不等式违反的原子-光子纠缠态的现实设置。在这里,我们通过给出表明Teo等人提出的状态的分析处理来改进对这一提议的分析。 [Nat。公社[4,2104(2013)]可能会违反任何其他低光检测效率的Bell不等式。此外,它还能够仅考虑原子和零差测量而违反贝尔不等式,从而无需考虑效率低下的光计数测量。在这种情况下,最大的Clauser-Horne-Shimony-Holt不等式违规可达到2.29,而违规所需的最小传输约为68%。最后,我们表明,通过在原子测量上进行后选择,可以针对各种相干态振幅设计相干态的叠加。

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