MODE LOCKING OF AN ION LASER BY MEANS OF A DISSECTOR

A. Apolonskii, E. Zinin, A. Kuklin, S. D. Shchebetov
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引用次数: 1

Abstract

The position of the light pulses on the period of the modulating function has been measured as a function of the discharge current, the resonator length, and other parameters for an argon laser with active mode locking. These measurements were carried out for various emission lines in the visible and UV regions. At a minimum pulse length, and at a pump level well above the threshold for lasing, the losses in the mode locker are high. The reasons for the difficulties encountered in attempts to achieve simultaneous mode locking of the 488.0- and 514.5-nm lines are pointed out. The evolution of the pulse shape (from the point of appearance to the point of disappearance) as the basic laser parameters are varied has been studied. The pulses are at their shortest when there is a satellite, rather than under single-pulse conditions. The experimental data are consistent with a model of supermodes.
用解剖器锁定离子激光器的模式
对具有主动锁模的氩激光器,测量了光脉冲在调制函数周期上的位置与放电电流、谐振腔长度和其他参数的关系。这些测量是对可见光和紫外线区域的各种发射线进行的。在最小脉冲长度和远高于激光阈值的泵浦电平时,锁模器中的损耗很高。指出了在488.0 nm和514.5 nm线同时实现模式锁定时遇到困难的原因。研究了激光基本参数变化时脉冲形状(从出现点到消失点)的变化规律。当有卫星时,而不是在单脉冲条件下,脉冲是最短的。实验数据与超模态模型一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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