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Physics of excitations of a small number of quanta in microresonators

机译:微谐振器中少量量子的激发物理学

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Abstract: We explore the physics of excitations of a small number of quanta in microresonators. In particular, we examine this physics as it relates to the dynamics of nonlinearly coupled microlaser oscillators used to generate time resolved coherent optical wavefronts. We seek wave fronts that can be both stabilized and also rapidly reconfigured by purely electro-optic means. Novel opportunities are offered by reductions in the number of quanta needed for laser, or laser-like action; advances in microcavity nonlinear optics; densely packed arrays of microlasers; adjustable micro- optical delay lines; synchronization of pulse envelopes in physically distinct lasers; and locking of optical fields in physically distinct lasers. Quantum statistical issues could become important, but are not emphasized here. Strategies for realizing an optical analog of high repetition rate agile microwave phased array radar with true delay are examined. !22
机译:摘要:我们探讨了微谐振器中少量量子的激发物理学。特别是,我们研究了这种物理学,因为它与用于产生时间分辨相干光波阵面的非线性耦合微激光振荡器的动力学有关。我们寻求的波阵面既可以稳定,也可以通过纯粹的电光方法快速重新配置。减少激光或类激光动作所需的量子数量会带来新的机遇。微腔非线性光学技术的发展;密集排列的微激光器阵列;可调节的微光学延迟线;物理上不同的激光器中脉冲包络的同步;并锁定物理上不同的激光器中的光场。量子统计问题可能变得很重要,但此处不再强调。研究了实现具有真实延迟的高重复率敏捷微波相控阵雷达光学模拟的策略。 !22

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