Ham Byoung S
School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, 123 Chumdangwagi-ro, Buk-gu, Gwangju, 61005, South Korea.
Sci Rep. 2023 Aug 9;13(1):12925. doi: 10.1038/s41598-023-40181-x.
Quantum entanglement generation is generally known to be impossible by any classical means. According to Poisson statistics, coherent photons are not considered quantum particles due to the bunching phenomenon. Recently, a coherence approach has been applied for quantum correlations such as the Hong-Ou-Mandel (HOM) effect, Franson-type nonlocal correlation, and delayed-choice quantum eraser to understand the mysterious quantum features. In the coherence approach, the quantum correlation has been now understood as a direct result of selective measurements between product bases of phase-coherent photons. Especially in the HOM interpretation, it has been understood that a fixed sum-phase relation between paired photons is the bedrock of quantum entanglement. Here, a coherently excited HOM model is proposed, analyzed, and discussed for the fundamental physics of two-photon correlation using linear optics-based polarization-basis control. For this, polarization-frequency correlation in a Mach-Zehnder interferometer is coherently excited using synchronized acousto-optic modulators, where polarization-basis control is conducted via a selective measurement process of the heterodyne signals. Like quantum operator-based destructive interference in the HOM theory, a perfectly coherent analysis shows the same HOM effects of the paired coherent photons on a beam splitter, whereas individual output intensities are uniform.
一般认为,通过任何经典方法都不可能产生量子纠缠。根据泊松统计,由于聚束现象,相干光子不被视为量子粒子。最近,一种相干方法已被应用于量子关联,如Hong-Ou-Mandel(HOM)效应、弗兰森型非局域关联和延迟选择量子擦除,以理解神秘的量子特性。在相干方法中,量子关联现在被理解为相位相干光子乘积基之间选择性测量的直接结果。特别是在HOM解释中,已经理解配对光子之间固定的和相位关系是量子纠缠的基础。在此,提出、分析并讨论了一个相干激发的HOM模型,用于基于线性光学的偏振基控制的双光子关联的基础物理研究。为此,使用同步声光调制器相干激发马赫-曾德尔干涉仪中的偏振-频率关联,其中通过外差信号的选择性测量过程进行偏振基控制。与HOM理论中基于量子算符的相消干涉一样,完美的相干分析表明,配对相干光子在分束器上具有相同的HOM效应,而各个输出强度是均匀的。