首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Unveiling of control on the polarization of supercontinuum spectra based on ultrafast birefringence induced by filamentation
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Unveiling of control on the polarization of supercontinuum spectra based on ultrafast birefringence induced by filamentation

机译:基于细丝诱导超细双折射的超连续体光谱偏振的控制

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摘要

An intensity pump femtosecond (fs) pulse incident into a transparent medium will produce filamentation and accompany supercontinuum (SC) spectrum generation. The polarization of the SC spectrum is always parallel to that of the pump pulse. How to control the polarization of the SC spectrum is a very interesting and crucial issue due to its great potential applications in remote sensing and time-resolved spectroscopy. Here we present a method to control the polarization of the SC spectrum generated in an optical isotropic medium, based on the nonlinear interaction between the two pump pulses with different linear polarizations. During the fs pulse filamentation, the optical Kerr effect induces ultrafast birefringence in the optical isotropic medium, which leads to different refractive indices in the two orthogonal directions parallel and perpendicular to the incident polarization, and hence, the resulting relative phase difference changes the polarizations of the pump pulses. The polarization states of both the pump pulses and the SC spectra can be achieved by changing the angle between the polarization directions of the two pulses. We unveil the mechanism of the polarization changes of the pump pulses and the SC spectra. (c) 2018 Optical Society of America
机译:入射到透明介质中的强度泵飞秒(FS)脉冲将产生丝状和伴随超级性(SC)谱产生。 SC光谱的偏振始终与泵脉冲的极性平行。如何控制SC光谱的极化是一种非常有趣和关键的问题,因为它在遥感和时间分辨光谱中的巨大潜在应用。这里我们介绍一种控制在光学各向同性介质中产生的SC光谱的偏振的方法,基于两个泵脉冲具有不同的线性偏振之间的非线性相互作用。在FS脉冲细丝期间,光学克尔效果在光学各向同性介质中引起超快双折射,这在两个正交方向上平行和垂直于入射极化导致不同的折射率,因此,所得到的相对相位差改变了偏振泵脉冲。通过改变两个脉冲的偏振方向之间的角度,可以实现泵脉冲和SC光谱的偏振状态。我们揭示了泵脉冲和SC光谱的极化变化的机制。 (c)2018年光学学会

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