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利用衍射效应实现二氧化碳激光器的锁相

Phase locking of CO(2) lasers by the use of diffraction effects.

作者信息

Schröder K, Müller A, Schuöcker D

出版信息

Appl Opt. 1995 Dec 20;34(36):8252-9. doi: 10.1364/AO.34.008252.

DOI:10.1364/AO.34.008252
PMID:21068942
Abstract

A technique to phase lock CO(2) lasers with spatially separated active media was investigated. Only reflective optics (except for the output coupler) were used, in view of applications of this method in the field of high-power lasers. Phase locking was established when the beams of two resonator branches were made to propagate very close to each other along the so-called coupling path. As a result of diffraction effects both resonators were exchanging energy, establishing a phase-locked operation mode when several locking conditions were fulfilled. A maximum coupling coefficient (the ratio between the diffracted intensity in the second cavity and the intercavity intensity in the first resonator) of 2.6% could be achieved. Because phase locking was highly dependent on the difference between the two resonator lengths, a length control that uses a piezoelectric translator connected to one of the resonator mirrors was used. To detect phase locking, the intensity maximum of the interference pattern of the two laser beams was monitored with a fast detector. By application of a ramp signal to the piezoelectric translator and detection of the peak intensity, the locking range could be measured. Up to a mismatch of the resonator lengths of λ/130, locking could be maintained. The measurements were compared with results of a computer simulation with Huygens-Fresnel integrals to describe diffraction and the one-dimensional Maxwellian equations to calculate supermodes and to analyze their stability. The numerical results showed an excellent agreement with the measured values.

摘要

研究了一种用于将具有空间分离有源介质的二氧化碳激光器进行锁相的技术。鉴于该方法在高功率激光器领域的应用,仅使用了反射光学元件(输出耦合器除外)。当两个谐振器分支的光束沿着所谓的耦合路径彼此非常靠近地传播时,实现了锁相。由于衍射效应,两个谐振器都在交换能量,当满足几个锁定条件时,建立了锁相工作模式。可以实现最大耦合系数(第二腔中的衍射强度与第一谐振器中的腔内强度之比)为2.6%。由于锁相高度依赖于两个谐振器长度之间的差异,因此使用了一种长度控制方法,该方法使用连接到其中一个谐振器镜的压电平移器。为了检测锁相,用快速探测器监测两束激光束干涉图样的强度最大值。通过向压电平移器施加斜坡信号并检测峰值强度,可以测量锁定范围。在谐振器长度失配高达λ/130的情况下,仍可保持锁定。将测量结果与计算机模拟结果进行了比较,计算机模拟使用惠更斯-菲涅耳积分来描述衍射,使用一维麦克斯韦方程来计算超模并分析其稳定性。数值结果与测量值显示出极好的一致性。

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