首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Ultrawide spectral broadening and compression of single extremely short pulses in the visible, uv-vuv, and middle infrared by high-order stimulated Raman scattering - art. no. 023812
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Ultrawide spectral broadening and compression of single extremely short pulses in the visible, uv-vuv, and middle infrared by high-order stimulated Raman scattering - art. no. 023812

机译:通过高阶受激拉曼散射对可见光,紫外可见光和中红外中的单个极短脉冲进行超宽光谱加宽和压缩-艺术。没有。 023812

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摘要

We present the results of a comprehensive analytical and numerical study of ultrawide spectral broadening and compression of isolated extremely short visible, uv-vuv and middle infrared (MIR) pulses by high-order stimulated Raman scattering in hollow waveguides. Spectral and temporal characteristics of the output pulses and the mechanism of pulse compression using dispersion of the gas filling and output glass window are investigated without the slowly varying envelope approximation. Physical limitations due to phase mismatch, velocity walk off, and pump-pulse depletion as well as improvements through the use of pump-pulse sequences and dispersion control are studied. It is shown that phase-locked pulses as short as similar to2 fs in the visible and uv-vuv, and 6.5 fs in the MIR can be generated by coherent scattering in impulsively excited Raman media without the necessity of external phase control. Using pump-pulse sequences, shortest durations in the range of about 1 fs for visible and uv-vuv probe pulses are predicted. [References: 94]
机译:我们提出了通过中空波导中的高阶受激拉曼散射对孤立的极短可见光,uv-vuv和中红外(MIR)脉冲进行超宽光谱展宽和压缩的全面分析和数值研究的结果。在没有缓慢变化的包络线近似的情况下,研究了输出脉冲的频谱和时间特性以及使用气体填充和输出玻璃窗口的色散的脉冲压缩机制。研究了由于相位不匹配,速度偏移和泵浦脉冲损耗而导致的物理局限性,以及通过使用泵浦脉冲序列和色散控制来改善的物理限制。结果表明,通过在脉冲激发拉曼介质中进行相干散射,可以产生短至类似于可见光和uv-vuv中2 fs的脉冲,类似于MIR中6.5 fs的锁相脉冲,而无需外部相位控制。使用泵脉冲序列,可以预测可见光和uv-vuv探针脉冲的最短持续时间在大约1 fs范围内。 [参考:94]

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