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用于光学关联与检测的具有近红外上转换功能的微波偏振计的偏振校准

Polarization Calibration of a Microwave Polarimeter with Near-Infrared Up-Conversion for Optical Correlation and Detection.

作者信息

Casas Francisco J, Vielva Patricio, Barreiro R Belen, Martínez-González Enrique, Pascual-Cisneros G

机构信息

Instituto de Física de Cantabria (IFCA), Avda. Los Castros s/n, 39005 Santander, Spain.

出版信息

Sensors (Basel). 2022 Oct 21;22(20):8080. doi: 10.3390/s22208080.

Abstract

This paper presents a polarization calibration method applied to a microwave polarimeter demonstrator based on a near-infrared (NIR) frequency up-conversion stage that allows both optical correlation and signal detection at a wavelength of 1550 nm. The instrument was designed to measure the polarization of cosmic microwave background (CMB) radiation from the sky, obtaining the Stokes parameters of the incoming signal simultaneously, in a frequency range from 10 to 20 GHz. A linearly polarized input signal with a variable polarization angle is used as excitation in the polarimeter calibration setup mounted in the laboratory. The polarimeter systematic errors can be corrected with the proposed calibration procedure, achieving high levels of polarization efficiency (low polarization percentage errors) and low polarization angle errors. The calibration method is based on the fitting of polarization errors by means of sinusoidal functions composed of additive or multiplicative terms. The accuracy of the fitting increases with the number of terms in such a way that the typical error levels required in low-frequency CMB experiments can be achieved with only a few terms in the fitting functions. On the other hand, assuming that the calibration signal is known with the required accuracy, additional terms can be calculated to reach the error levels needed in ultrasensitive B-mode polarization CMB experiments.

摘要

本文提出了一种应用于基于近红外(NIR)频率上转换阶段的微波偏振计演示器的偏振校准方法,该校准方法允许在1550 nm波长处进行光学相关和信号检测。该仪器旨在测量来自天空的宇宙微波背景(CMB)辐射的偏振,在10至20 GHz的频率范围内同时获取入射信号的斯托克斯参数。在实验室安装的偏振计校准装置中,使用具有可变偏振角的线偏振输入信号作为激励。通过所提出的校准程序可以校正偏振计的系统误差,实现高水平的偏振效率(低偏振百分比误差)和低偏振角误差。该校准方法基于通过由加法或乘法项组成的正弦函数对偏振误差进行拟合。拟合的精度随着项数的增加而提高,以至于在低频CMB实验中所需的典型误差水平仅通过拟合函数中的少数项即可实现。另一方面,假设校准信号的精度已知,那么可以计算额外的项以达到超灵敏B模式偏振CMB实验所需的误差水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc89/9609977/16ee7c60cf1f/sensors-22-08080-g001.jpg

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