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ASE suppression of XeCl excimer laser MOPA system using UV electro-optical switch

机译:紫外光电开关对XeCl准分子激光MOPA系统的ASE抑制

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In high power eximer laser system, amplified spontaneous emission (ASE) decreases the signal contrast ratio severely, leads to waveform broadening and distortion, and impacts on accurate physical experiments. In this article, based on principle of short pulse generation by electro-optical (E-O) switch, a method for ASE suppression of laser amplifiers chain was established. A series of studies on UV electro-optical switches were carried out, and electro-optical (E-O) switches with high extinction ratio were developed. In the waveform clipping experiments of the first pre-amplifier, the extinction ratio of the single and cascaded dual E-O switch reaches 10~3 and 10~4 order of magnitude, the laser pulse signal contrast ratio was promoted to 10~5 and 106 level, respectively. In the experiments of single channel MOPA (Master Oscillator Power Amplifier system), the cascaded dual E-O switch was adopted to suppress ASE of the whole system, and a fine narrow pulse was obtained on the target surface, which gives out one effective solution to the problem of waveform amplification of the high power eximer laser system.
机译:在大功率准分子激光系统中,放大的自发发射(ASE)严重降低了信号对比度,导致波形展宽和失真,并影响精确的物理实验。本文基于电光(E-O)开关产生短脉冲的原理,建立了一种抑制激光放大器链的ASE的方法。对紫外线电光开关进行了一系列研究,并开发了具有高消光比的电光(E-O)开关。在第一个前置放大器的波形削波实验中,单级和级联双EO开关的消光比分别达到10〜3和10〜4个数量级,激光脉冲信号对比度提高到10〜5和106级, 分别。在单通道MOPA(主振荡器功率放大器系统)实验中,采用级联双EO开关来抑制整个系统的ASE,并在目标表面上获得了一个细窄脉冲,这为解决该问题提供了一种有效的解决方案。大功率准分子激光系统的波形放大问题。

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