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Applications of optical parametric downconversion : I. Self-phase locking, and II. Generation of entangled photon pairs in periodically-poled lithium niobate

机译:光学参量下变频的应用:I。自相位锁定,和 II。在周期性极化的铌酸锂中产生纠缠光子对

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摘要

Nonlinear optics plays a key role in many applications not only as a means of frequency synthesis and control, but also as a source of twin photons and other nonclassical states of light. Advances in nonlinear materials, including engineered nonlinear interactions through the use of quasi-phase matching, have increased the flexibility and performance of many nonlinear optical devices. One of the devices presented in this thesis is a 2:1 frequency divider based on self-phase locking in a type-II phase matched optical parametric oscillator. This device is investigated both theoretically and experimentally. Results are also presented on fabrication of periodically-poled nonlinear crystals for quasi-phase matching in lithium niobate and barium magnesium fluoride. Finally, a high-efficiency frequency-nondegenerate twin photon source is implemented in periodically-poled lithium niobate.
机译:非线性光学在许多应用中起着关键作用,不仅作为频率合成和控制的手段,而且还作为双光子和其他非经典光态的来源。非线性材料的发展,包括通过使用准相位匹配来设计非线性相互作用,已经提高了许多非线性光学器件的灵活性和性能。本文提出的设备之一是在II型相位匹配光参量振荡器中基于自锁相的2:1分频器。在理论上和实验上都对该装置进行了研究。还提出了制备铌酸锂和氟化钡镁中准相位匹配的周期性极化非线性晶体的结果。最后,在周期极化的铌酸锂中实现了一种高效的频率非简并双光子源。

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