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Theoretical study and experimental scheme for the generation of a 1064-nm continuous variable entangled light source with quasi-phase-matching PPKTP crystal

机译:准相位匹配PPKTP晶体产生1064nm连续可变纠缠光源的理论研究和实验方案

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摘要

Beginning from Maxwell's equations, various factors required for the non-degenerate optical parametric amplifier (NOPA) to operate are considered step by step. Analytic expressions are obtained, generated from the experimental parameters and through the numerical simulation of the quantum-correlated spectrum between the signal and the idler modes from the NOPA operating below threshold. On this basis, an experimental program is designed for the generation of a 1064-nm continuous variable entanglement light source with a quasi-phase-matching periodical polarized KTiOPO-4 (PPKTP) crystal through a below-threshold optical parametric down-conversion process. This will play a crucial role in subsequent experiments.
机译:从麦克斯韦方程开始,逐步考虑了非简并光学参量放大器(NOPA)工作所需的各种因素。通过实验参数并通过NOPA在低于阈值下运行的信号和惰轮模式之间的量子相关光谱的数值模拟,可以获得解析表达式。在此基础上,设计了一个实验程序,用于通过阈值以下光学参数下转换过程生成具有准相位匹配的周期性极化KTiOPO-4(PPKTP)晶体的1064 nm连续可变纠缠光源。这将在后续实验中发挥关键作用。

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