4.8 Article

Exponentially Decreasing Critical Detection Efficiency for Any Bell Inequality

期刊

PHYSICAL REVIEW LETTERS
卷 129, 期 23, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.129.230403

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资金

  1. QuantERA
  2. ERA-Net cofund in Quantum Technologies
  3. SECRET
  4. MINECO [PCI2019-111885-2]
  5. eDICT
  6. First TEAM [2016-1/5]
  7. Project Qdisc [US-15097]
  8. FEDER funds
  9. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [441423094]
  10. Foundation for Polish Science (IRAP project, ICTQT, EU within Smart Growth Operational Programme) [2018/MAB/5]
  11. NCN grant SHENG [2018/30/Q/ST2/00625]
  12. Knut and Alice Wallenberg Foundation
  13. Swedish Research Council
  14. Knut and Alice Wallenberg Foundation through the Wallenberg Centre for Quantum Technology (WACQT)

向作者/读者索取更多资源

We address the problem of closing the detection efficiency loophole in Bell experiments and propose a general method for reducing the critical detection efficiency of any Bell inequality. This is accomplished by entangling two particles in multiple orthogonal subspaces and conducting multiple Bell tests. The proposed method closes the simultaneous measurement loophole by introducing penalized N-product Bell inequalities.
We address the problem of closing the detection efficiency loophole in Bell experiments, which is crucial for real-world applications. Every Bell inequality has a critical detection efficiency. that must be surpassed to avoid the detection loophole. Here, we propose a general method for reducing the critical detection efficiency of any Bell inequality to arbitrary low values. This is accomplished by entangling two particles in N orthogonal subspaces (e.g., N degrees of freedom) and conducting N Bell tests in parallel. Furthermore, the proposed method is based on the introduction of penalized N-product (PNP) Bell inequalities, for which the so-called simultaneous measurement loophole is closed, and the maximum value for local hidden-variable theories is simply the Nth power of the one of the Bell inequality initially considered. We show that, for the PNP Bell inequalities, the critical detection efficiency decays exponentially with N. The strength of our method is illustrated with a detailed study of the PNP Bell inequalities resulting from the Clauser-Horne-Shimony-Holt inequality.

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