除3连续波光学参量振荡器的慢动力学和多对自锁相振荡

J. Zondy, D. Kolker, P. Gorelik, F. Wong
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引用次数: 0

摘要

本文研究了连续波光学参量振荡器(OPO)的慢动力学和多对自锁相振荡。这项工作还报告了一种不同的操作制度,即通过改变PPLN相位匹配温度,使SLOPO的频率偏离精确的3分。当/spl δ /等于或倍数于无腔光谱范围/spl δ //spl nu//sub s/时,通过对SPLOPO输出的光谱分析,可以观察到许多谐振模式对(高达5-6)的级联注入锁定,这是连续波锁模OPO操作的前提。由于增益饱和,在传统的OPO中排除了这种同时的多对稳定振荡。锁相对的最大数目受泵浦功率的限制。讨论了该器件作为多部量子纠缠对产生器的潜力,以及在三相编码螺旋波横向图样形成中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Slow dynamics and multipair self phase-locked oscillation in the divide-by-3 cw optical parametric oscillator
This study investigates the slow dynamics and multipair self phase-locked oscillation in the divide-by-3 continuous-wave optical parametric oscillator (OPO). This work also reports on a different regime of operation, when the SLOPO is slightly frequency detuned from exact by-3 division by changing the PPLN phase-matching temperature. When /spl delta/ is equal or multiple of the cavity free spectral range /spl Delta//spl nu//sub s/, cascade injection-locking of many resonant mode pairs (up to 5-6) has been observed by spectral analysis of the SPLOPO output, as a premise to a cw mode-locked OPO operation. Such a simultaneous multipair stable oscillation is precluded in a conventional OPO due to gain saturation. The maximum number of phase-locked pairs is limited by the pumping power. The potential of the device as a generator of multipartite quantum entangled pairs, as well as in 3-phase-encoded spiral wave transverse pattern formation are discussed.
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