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Achromatic half-wave plate for submillimeter instruments in cosmic microwave background astronomy: modeling and simulation

机译:宇宙微波背景天文学中用于亚毫米仪器的消色差半波板:建模与仿真

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摘要

We adopted an existing formalism and modified it to simulate, with high precision, the transmission, reflection, and absorption of multiple-plate birefringent devices as a function of frequency. To validate the model, we use it to compare the measured properties of an achromatic five-plate device with a broadband antireflection coating to expectations derived from the material optical constants and its geometric configuration. The half-wave plate presented here is observed to perform well with a phase shift variation of <2 deg from the ideal 180 deg over a bandwidth of (DELTA)v/v approx 1 at millimeter wavelengths. This formalism represents a powerful design tool for birefringent polarization modulators and enables its optical properties to be specified with high accuracy.
机译:我们采用了现有的形式主义,并对其进行了修改,以高精度模拟多板双折射设备的透射,反射和吸收随频率的变化。为了验证该模型,我们将其用于比较带宽带减反射涂层的消色差五板器件的测量性能与从材料光学常数及其几何构造得出的期望值。在毫米波波长下,在大约1的Δv/ v带宽上,观察到的半波片在理想的180度下相移变化小于2度时表现良好。这种形式表示了一种用于双折射偏振调制器的强大设计工具,并使其光学特性能够以高精度指定。

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