气体分子腔内调幅形成窄带梳状峰的锁模脉冲

Daiki Okazaki, Wenqing Song, I. Morichika, S. Ashihara
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引用次数: 0

摘要

锁模中红外激光器[1]由于其光谱亮度高于用于宽带分子振动光谱的热光源,因此得到了广泛的研究。这些激光器通常具有光滑的钟形光谱,然而,研究光谱结构源的可能性也很有趣。对腔内气体分子锁模脉冲窄带色散谱峰形成的研究较少[2,3]。最近,我们报道了锁模Cr:ZnS激光光谱上出现对称的光谱峰[4]。在本文中,与我们之前的报道[4]相比,我们通过数值模拟进一步研究了这一现象,明确了对称的光谱峰是由分子光学常数虚部带来的调幅形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mode-Locked Pulses with Narrowband Comb-Like Peaks Formed by Intracavity Amplitude Modulation from Gaseous Molecules
There have been extensive researches on mode-locked mid-infrared lasers [1], because they show higher spectral brightness than thermal light sources which had been used for broadband molecular vibrational spectroscopy. Those lasers usually possess smooth bell-shaped spectrum, however it is also interesting to investigate the possibility of spectrally structured sources. There are a few researches on narrowband dispersive spectral peaks formation on mode-locked pulses with intracavity gaseous molecules [[2, 3]. Recently, we have reported the symmetric spectral peaks appear on the mode-locked Cr:ZnS laser spectrum [4]. In this paper, compared to our previous report [4], we further investigate this phenomenon through numerical simulations, and clarify that the symmetric spectral peaks are formed by amplitude modulation brought from imaginary part of the molecular optical constant.
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