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超高斯耦合非稳激光腔中增益介质衍射建模

Modeling gain-medium diffraction in super-Gaussian coupled unstable laser cavities.

作者信息

Kennedy Ann W, Gruber John B, Bolton Paul R, Bowers Mark S

机构信息

Department of Physics, San Jose State University, One Washington Square, San Jose, California 95192, USA.

出版信息

Appl Opt. 2005 Mar 1;44(7):1283-7. doi: 10.1364/ao.44.001283.

Abstract

The diffractive effects of a single laser rod in an unstable super-Gaussian coupled cavity are modeled for a range of cavity configurations, with an intracavity, zero-thickness aperture. After fundamental mode propagation through a maximally flat output coupler, beam quality (M2) and far-field power loss values are related. Beam quality is most sensitive to cavity magnification and aperture Fresnel number, both correlated to the aperture-equivalent Fresnel number. In contrast, variation of M2 with aperture position is sufficiently conservative to predict the intensity profile of a solid-state laser with a typical gain length, in good agreement with experimental data.

摘要

针对一系列具有腔内零厚度孔径的腔结构,对不稳定超高斯耦合腔中单个激光棒的衍射效应进行了建模。在基模通过最大平坦输出耦合器传播后,光束质量(M²)与远场功率损耗值相关。光束质量对腔放大倍数和孔径菲涅耳数最为敏感,这两者都与等效孔径菲涅耳数相关。相比之下,M²随孔径位置的变化足够保守,足以预测具有典型增益长度的固态激光器的强度分布,与实验数据吻合良好。

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