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首页> 外文期刊>Laser physics letters >A fundamental mode miniature acousto-optically Q-switched Nd:YVO{sub}4 laser with short pulse width at high repetition rates
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A fundamental mode miniature acousto-optically Q-switched Nd:YVO{sub}4 laser with short pulse width at high repetition rates

机译:高重复率,短脉冲宽度的基模微型声光Q开关Nd:YVO {sub} 4激光器

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摘要

A miniature, high repetition rate, short pulse width acousto-optically Q-switched Nd:YVO{sub}4 laser in fundamental mode is presented. Miniature solid-state lasers have the characteristics of short cavity length and small mode area in the cross section, which, on the one hand, benefits high gain, high repetition rate and short pulse width, on the other hand, makes it difficult to achieve high mode-matching efficiency and causes higher order modes oscillation. The thermal lens in Nd:YVO{sub}4 is treated as thick lens under high pump intensity. The mode-matching efficiency is analyzed with the thermal lens being equivalent to a thin lens array. In high repetition rate Q-switching operation, 3.6 ns pulses at 500 kHz repetition rate with 20 mm cavity length and 4.1 kW peak power are achieved, without active control of pump beam quality. The laser beam quality factors were measured to be (M{sub}x){sup}2 = 2.03, (M{sub}y){sup}2 = 2.46. By improving the pump beam quality and utilizing the optimal pump beam waist radius and location, the mode-matching efficiency and laser beam quality are improved. 4.0 ns pulses at 500 kHz with 2.5 kW peak power are produced. The beam quality factors were measured to be (M{sub}x){sup}2 = 1.31, (M{sub}y){sup}2 = 1.43.
机译:提出了一种基本模式的小型,高重复频率,短脉冲宽度的声光调Q Nd:YVO {sub} 4激光。微型固态激光器具有腔长短,截面模面积小的特点,一方面有利于高增益,高重复率和短脉冲宽度,另一方面难以实现。较高的模式匹配效率,并导致更高阶的模式振荡。在高泵浦强度下,将Nd:YVO {sub} 4中的热透镜视为厚透镜。用热透镜等效于薄透镜阵列来分析模式匹配效率。在高重复率Q切换操作中,在没有主动控制泵浦光束质量的情况下,以500 kHz重复率获得3.6 ns的脉冲,腔长20 mm,峰值功率为4.1 kW。测得的激光束质量因子为(M {sub} x){sup} 2 = 2.03,(M {sub} y){sup} 2 = 2.46。通过改善泵浦光束质量并利用最佳的泵浦光束腰部半径和位置,可以提高模式匹配效率和激光束质量。在500 kHz时产生2.5 kW峰值功率的4.0 ns脉冲。测得的光束质量因子为(M {sub} x){sup} 2 = 1.31,(M {sub} y){sup} 2 = 1.43。

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