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激光谐振器模式的三维衍射计算

Three-dimensional diffraction calculations of laser resonator modes.

作者信息

Chester A N

出版信息

Appl Opt. 1973 Oct 1;12(10):2353-66. doi: 10.1364/AO.12.002353.

Abstract

The numerical technique of Fox and Li for computing laser resonator modes is applied to the case of three-dimensional laser resonators without circular or rectangular symmetries. The computation techniques are explained, and results are presented for several specific resonators, both stable and unstable. The effect of laser medium shock waves on the refractive index of the optical cavity is approximated by a thin sheet near one resonator mirror. The near-field burn pattern of the laser output beam exactly follows the phase pattern of the shock fronts, in good qualitative agreement with experimental results reported for gas dynamic lasers. The far-field output beam demonstrates pronounced astigmatism, being considerably broadened at right angles to the flow direction, and it suggests a breakup of the far-field pattern into several separate intensity spots. The optical phase of the resonator mode is quite smooth, even in the worst cases studied, suggesting the possibility of phase compensation by suitable optics.

摘要

福克斯和李用于计算激光谐振腔模式的数值技术被应用于无圆形或矩形对称性的三维激光谐振腔情形。文中解释了计算技术,并给出了几个稳定和不稳定的特定谐振腔的结果。激光介质冲击波对光学腔折射率的影响通过靠近一个谐振腔镜的薄片来近似。激光输出光束的近场烧蚀图案精确地遵循激波前沿的相位图案,与气体动力学激光器报道的实验结果在定性上吻合良好。远场输出光束表现出明显的像散,在与流动方向成直角的方向上显著展宽,这表明远场图案会分裂成几个单独的强度光斑。即使在研究的最糟糕情形下,谐振腔模式的光学相位也相当平滑,这表明通过合适的光学器件进行相位补偿的可能性。

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