摘要: Contextuality, a hallmark feature of the quantum theory, captures the
incompatibility between quantum correlations and any noncontextual
hidden-variable model. The Greenberger--Horne--Zeilinger (GHZ)-type paradoxes
are proofs of contextuality which reveal this incompatibility with
deterministic logical arguments. However, the simplest GHZ-type paradox with
the fewest number of complete contexts and the largest degree of
nonclassicality remains elusive. Here, we derive a GHZ-type paradox utilising
only three complete contexts and show this number cannot be further reduced. We
forward to demonstrating the paradox with an experiment which recovered all
essential ingredients in a 37-dimensional contextuality test based on
high-speed modulation, optical convolution and homodyne detection of
time-multiplexed modes of coherent light that can be interpreted as a classical
entity. By proposing and observing a strong form of contextuality in an
extremely high-dimensional system, our results pave the way for the exploration
of exotic quantum correlations with optical systems.
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分类:
光学
>>
量子光学
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引用:
ChinaXiv:202303.00876
(或此版本
ChinaXiv:202303.00876V1)
DOI:10.12074/202303.00876V1
CSTR:32003.36.ChinaXiv.202303.00876.V1
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科创链TXID:
e534f6e0-5ed4-4ac5-a10f-6ba4135f9ef4
- 推荐引用方式:
Zheng-Hao Liu,Yu Meng,Yu-Ze Wu,Ze-Yan Hao,Zhen-Peng Xu,Cheng-Jun Ai,Hai Wei,Kai Wen,Jing-Ling Chen,Jie Ma,Jin-Shi Xu,Chuan-Feng Li,Guang-Can Guo.Exploring the boundary of quantum correlations with coherent light.中国科学院科技论文预发布平台.[ChinaXiv:202303.00876V1]
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