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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Influence of gas circulation on stimulated Raman scattering and amplification of ultrashort laser pulses in methane
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Influence of gas circulation on stimulated Raman scattering and amplification of ultrashort laser pulses in methane

机译:气体循环对甲烷中拉曼散射和超短激光脉冲放大的影响

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摘要

Applying gas recirculation in a high pressure cell, laser pulses of 1 ps at 400 nm and with a repetition rate of 1 kHz were frequency shifted by stimulated Raman scattering and amplification in methane gas at high pressure. We studied the influence of gas recirculation on the conversion efficiencies into the Stokes and anti-Stokes components as well as on their spatial distributions and spectral shapes using generator and generator-amplifier arrangements. For high pump energies, recirculation in the generator cell decreases conversion efficiency into the first Stokes component whereas it increases conversion into higher Stokes and anti-Stokes components. It results in a significantly improved spatial characteristics of the frequency-shifted radiation, however, is accompanied by a substantial spectral broadening. Using gas recirculation in the generator-amplifier arrangement we achieved a conversion efficiency into the first Stokes component of about 50percent with highly improved spatial and spectral characteristics.
机译:通过在高压电池中进行气体再循环,通过受激拉曼散射和高压甲烷气体中的放大作用,使400 nm处1 ps的激光脉冲和1 kHz的重复频率发生频移。我们使用发生器和发生器-放大器装置研究了气体再循环对斯托克斯和反斯托克斯分量的转换效率以及它们的空间分布和频谱形状的影响。对于高泵浦能量,发电机单元中的再循环降低了转换为第一斯托克斯分量的转换效率,而增加了转换为更高的斯托克斯和反斯托克斯分量的转换。它导致频移辐射的空间特性得到显着改善,但是会伴随着明显的光谱展宽。通过在发生器-放大器装置中使用气体再循环,我们获得了大约50%的第一斯托克斯分量的转换效率,并且空间和光谱特性得到了极大改善。

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