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光学事件视界 regime 下的探针控制孤子频移。

Probe-controlled soliton frequency shift in the regime of optical event horizon.

作者信息

Gu Jie, Guo Hairun, Wang Shaofei, Zeng Xianglong

出版信息

Opt Express. 2015 Aug 24;23(17):22285-90. doi: 10.1364/OE.23.022285.

Abstract

In optical analogy of the event horizon, temporal pulse collision and mutual interactions are mainly between an intense solitary wave (soliton) and a dispersive probe wave. In such a regime, here we numerically investigate the probe-controlled soliton frequency shift as well as the soliton self-compression. In particular, in the dispersion landscape with multiple zero dispersion wavelengths, bi-directional soliton spectral tunneling effects is possible. Moreover, we propose a mid-infrared soliton self-compression to the generation of few-cycle ultrashort pulses, in a bulk of quadratic nonlinear crystals in contrast to optical fibers or cubic nonlinear media, which could contribute to the community with a simple and flexible method to experimental implementations.

摘要

在事件视界的光学类比中,时间脉冲碰撞和相互作用主要发生在强孤立波(孤子)和色散探测波之间。在这样的体系中,我们在此进行数值研究探测波控制的孤子频移以及孤子自压缩。特别地,在具有多个零色散波长的色散格局中,双向孤子光谱隧穿效应是可能的。此外,我们提出在块状二次非线性晶体中实现中红外孤子自压缩以产生少周期超短脉冲,这与光纤或立方非线性介质不同,可为实验实现提供一种简单灵活的方法。

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