Key Laboratory of Quantum Information, University of Science and Technology of China, CAS , Hefei. 230026, China.
Sci Rep. 2011;1:101. doi: 10.1038/srep00101. Epub 2011 Sep 26.
Despite the great success of quantum mechanics, questions regarding its application still exist and the boundary between quantum and classical mechanics remains unclear. Based on the philosophical assumptions of macrorealism and noninvasive measurability, Leggett and Garg devised a series of inequalities (LG inequalities) involving a single system with a set of measurements at different times. Introduced as the Bell inequalities in time, the violation of LG inequalities excludes the hidden-variable description based on the above two assumptions. We experimentally investigated the single photon LG inequalities under decoherence simulated by birefringent media. These generalized LG inequalities test the evolution trajectory of the photon and are shown to be maximally violated in a coherent evolution process. The violation of LG inequalities becomes weaker with the increase of interaction time in the environment. The ability to violate the LG inequalities can be used to set a boundary of the classical realistic description.
尽管量子力学取得了巨大的成功,但关于其应用仍存在问题,量子力学和经典力学之间的界限仍不清楚。基于宏观现实主义和非侵入性可测量性的哲学假设,莱格特和加格设计了一系列涉及单个系统在不同时间进行一系列测量的不等式(LG 不等式)。这些不等式最初被称为时间贝尔不等式,LG 不等式的违反排除了基于上述两个假设的隐藏变量描述。我们在双折射介质模拟的退相干下实验研究了单光子 LG 不等式。这些广义 LG 不等式检验了光子的演化轨迹,在相干演化过程中被证明最大程度地违反了这些不等式。LG 不等式的违反随着环境中相互作用时间的增加而减弱。违反 LG 不等式的能力可用于设定经典现实描述的边界。