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作为高功率碘激光链前端的光学参量振荡器的闭环波长稳定化

Closed-loop wavelength stabilization of an optical parametric oscillator as a front end of a high-power iodine laser chain.

作者信息

Kral L

机构信息

Institute of Physics, Academy of Sciences of the Czech Republic, Na Slovance 2, CZ-182 21 Prague 8, Czech Republic.

出版信息

Rev Sci Instrum. 2007 May;78(5):053104. doi: 10.1063/1.2740473.

Abstract

We present a complex stabilization and control system for a commercially available optical parametric oscillator. The system is able to stabilize the oscillator's output wavelength at a narrow spectral line of atomic iodine with subpicometer precision, allowing utilization of this solid-state parametric oscillator as a front end of a high-power photodissociation laser chain formed by iodine gas amplifiers. In such setup, a precise wavelength matching between the front end and the amplifier chain is necessary due to extremely narrow spectral lines of the gaseous iodine (approximately 20 pm). The system is based on a personal computer, a heated iodine cell, and a few other low-cost components. It automatically identifies the proper peak within the iodine absorption spectrum, and then keeps the oscillator tuned to this peak with high precision and reliability. The use of the solid-state oscillator as the front end allows us to use the whole iodine laser system as a pump laser for the optical parametric chirped pulse amplification, as it enables precise time synchronization with a signal Ti:sapphire laser.

摘要

我们展示了一种用于商用光学参量振荡器的复杂稳定与控制系统。该系统能够以亚皮米精度将振荡器的输出波长稳定在原子碘的窄谱线上,从而可将这种固态参量振荡器用作由碘气体放大器构成的高功率光解离激光链的前端。在这种设置中,由于气态碘的谱线极窄(约20皮米),前端与放大器链之间需要精确的波长匹配。该系统基于一台个人计算机、一个加热碘池以及其他一些低成本组件。它能自动识别碘吸收光谱内的合适峰值,然后以高精度和高可靠性将振荡器调谐到该峰值。使用固态振荡器作为前端使我们能够将整个碘激光系统用作光学参量啁啾脉冲放大的泵浦激光,因为它能够与信号钛宝石激光器实现精确的时间同步。

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