Control of Focused Laser Beams with Different Spatial Polarization

A. Degtyarev, M. Dubinin, O. Gurin, V. Maslov, K. Muntean, V. Ryabyh, V. Senyuta
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Abstract

The possibility for changing the parameters of the focal region of tightly focused laser beams excited by the modes of resonator of a THz laser based on a hollow circular dielectric waveguide was studied theoretically and experimentally. In the experiment, the focusing system was a short-focus lens with the central region covered by absorbing masks. The focal area parameters were changed by varying the size of the masks. The electric field components of the modes under study were theoretically calculated using the integral Rayleigh-Sommerfeld transformations under the non-paraxial approximation. The use of absorbing masks made it possible to reduce the beam diameter in the focal region and increase the depth of focus of the linearly polarized EH11-mode and azimuthally polarized TE01-mode.
不同空间偏振聚焦激光束的控制
从理论上和实验上研究了空心圆形介质波导太赫兹激光器谐振腔模式激发紧聚焦激光束改变聚焦区域参数的可能性。在实验中,聚焦系统是一个短焦透镜,中心区域被吸收膜覆盖。通过改变掩模的大小来改变焦点区域参数。利用非傍轴近似下的瑞利-索默菲尔德积分变换,从理论上计算了所研究模态的电场分量。吸收掩模的使用使得线偏振eh11模式和方位角偏振te01模式的光束直径减小,聚焦深度增加成为可能。
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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