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Complete optical throughput analysis of the static polarization wind imaging interferometer

机译:静态偏振风成像干涉仪的完整光通量分析

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The basic principle of the static polarization wind imaging interferometer (SPWII) is expounded in this paper. By using trigonometric function and complex amplitude methods, the complex vibration amplitude of each polarization device with deviation from its ideal direction is calculated. The variations of the fringe visibility and optical throughput with deviation angles are given analytically and simulated numerically. According to the design parameters of the SPWII, the air-equivalent length L is equal to 16.14 cm and the total transmissivity is greater than 0.4. When the polarization directions of each polarization device are all in the ideal directions, the total optical throughput can be maintained at about 16.4% of the incident optical intensity. When the polarization directions of each polarization device are all 2° deviated from the ideal positions, the total optical throughput is decreased by 0.08%. This work would be useful for the realization and data processing of the SPWII.
机译:阐述了静态偏振风成像干涉仪(SPWII)的基本原理。通过使用三角函数和复振幅方法,可以计算出每个偏振装置偏离其理想方向的复振动振幅。通过分析和数值模拟,给出了条纹可见度和光通量随偏角的变化。根据SPWII的设计参数,空气当量长度L等于16.14厘米,总透射率大于0.4。当每个偏振装置的偏振方向都在理想方向上时,总的光通量可以保持在入射光强度的约16.4%。当每个偏振装置的偏振方向全部偏离理想位置2°时,总光通量降低0.08%。这项工作对于SPWII的实现和数据处理将是有用的。

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