Aditya托卡马克诊断用薄膜光学带通滤波器设计综述

L. A. Marcilin, N. Nandhitha
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引用次数: 0

摘要

薄膜光学带通滤波器在Aditya托卡马克中广泛用于诊断$\ mathm {H}\alpha$和碳发射。近年来,基于Fabry Perot滤波器、基于偏振滤波器和基于Bragg反射镜滤波器被文献引用用于血浆诊断。这些滤波器的性能可以通过粒子群优化、遗传算法等优化技术来提高。然而,主要的挑战在于开发薄膜光学带通滤波器,以满足所需的中心波长(CWL)和期望的全宽半最大值(FWHM)。本文对光学带通滤波器的设计、优化技术和等离子体诊断背后的物理原理进行了详细的文献综述。
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A Survey On The Design Of Thin Film Optical Bandpass Filter For Diagnosis In Aditya Tokamak
Thin film optical bandpass filters are widely used in Aditya Tokamak for the diagnosis of $\mathrm{H}\alpha$ and Carbon emission. In recent years, Fabry Perot based filters, polarization based filter and Bragg’s mirror based filters are cited in literatures for plasma diagnosis. Performance of these filters can be improved through optimization techniques like Particle Swarm optimization, Genetic Algorithm etc. However the major challenge lies in developing thin film optical bandpass filters for the desired Central WaveLength (CWL) and expected Full Width Half Maximum (FWHM). In this paper, a detailed literature survey is performed on the physics behind the design of optical band pass filters, optimization techniques and plasma diagnostics using optical filters.
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