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Generation of Novel Wavelengths by Means of Raman Conversion

机译:通过拉曼转换产生新型波长

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Raman converters and a Difference Frequency Mixer have been developed for near and mid IR range along with excitation system based on 1053-nm Nd:YLF MOPA laser generating 2 types of nanosecond pulses (10 ns and 20 ns). We used a flash-lamp pumped amplifier following by a diode-pumped solid-state master oscillator with a passive Cr:YAG modulator. Usually such a passive Q-switch MOPA laser produces pulses with a long (over 10 ns) pre-pulse pedestal. This complicates an excitation of Raman generation in media where SBS threshold at nanosecond pumping is below the SRS threshold (liquids and gases as a rule, but also some solids as fused silica). The reduction of SRS threshold would be possible if we excite a Stokes Raman emission in a resonator. However, even in this case the long pre-pulse pedestal may favor the SBS excitation vs. the SRS.
机译:已经针对近红外和中红外范围开发了拉曼转换器和差频混频器,以及基于1053 nm Nd:YLF MOPA激光的激发系统,产生两种类型的纳秒脉冲(10 ns和20 ns)。我们使用了闪光灯泵浦放大器,随后是带有无源Cr:YAG调制器的二极管泵浦固态主振荡器。通常,这种无源Q开关MOPA激光器产生的脉冲具有较长的预脉冲基座(超过10 ns)。这使在纳秒泵浦下的SBS阈值低于SRS阈值(通常为液体和气体,但也有一些固体为熔融二氧化硅)的介质中激发拉曼产生变得复杂。如果我们激发谐振器中的斯托克斯拉曼发射,则可以降低SRS阈值。但是,即使在这种情况下,较长的预脉冲基座也可能偏向于SBS激励而不是SRS。

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