首页> 外文期刊>IEEE Journal of Quantum Electronics >Raman shifting in the absence of multiple Stokes orders with a Nd:YAG laser in hydrogen: evidence of coupling between the forward and backward Stokes processes
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Raman shifting in the absence of multiple Stokes orders with a Nd:YAG laser in hydrogen: evidence of coupling between the forward and backward Stokes processes

机译:在氢气中使用Nd:YAG激光在没有多个斯托克斯阶数的情况下进行拉曼位移:正向和反向斯托克斯过程之间存在耦合的证据

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摘要

By Raman shifting the output of a 1.319-/spl mu/m Nd:YAG laser in hydrogen, up to 24.5 mJ of Stokes light at 2.918 /spl mu/m has been generated. Due to the low energy of the 2.918-/spl mu/m Stokes photons, the first Stokes is the only Stokes line for this system. The effect of pressure on the conversion is notably simpler in this regime, but the gain saturates unusually slowly. An unexpected pump linewidth sensitivity in the forward Stokes conversion is observed. Coupling of the forward and backward Stokes processes is suggested as an explanation for these effects and is supported by a simple model.
机译:通过拉曼在氢气中移动1.319- / spl mu / m Nd:YAG激光器的输出,可以产生2.918 / spl mu / m的高达24.5 mJ的斯托克斯光。由于2.918- / spl mu / m斯托克斯光子的能量低,第一个斯托克斯是该系统唯一的斯托克斯线。在这种情况下,压力对转换的影响特别简单,但增益异常缓慢地饱和。在前向斯托克斯转换中观察到意外的泵浦线宽灵敏度。建议使用向前和向后斯托克斯过程的耦合来解释这些效果,并通过一个简单的模型进行支持。

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