Systems design, assembly, integration and lab testing of WALOP-South Polarimeter
Siddharth Maharana, A. N. Ramaprakash, Chaitanya Rajarshi, Pravin, Khodade, Bhushan Joshi, Pravin Chordia, Abhay Kohok, Ramya M. Anche, Deepa, Modi, John A. Kypriotakis, Amit Deokar, Aditya Kinjawadekar, Stephen B., Potter, Dmitry Blinov, Hans Kristian Eriksen, Myrto Falalaki

TL;DR
WALOP-South is a pioneering wide-field polarimeter designed for the PASIPHAE sky survey, capable of measuring linear polarization of sources in a single exposure with high accuracy, involving complex systems engineering and lab testing.
Contribution
This paper details the innovative design, development, and lab integration of WALOP-South, including its opto-mechanical subsystems, which is novel in the context of wide-field polarimeters.
Findings
All subsystems assembled and tested as of May 2024
Lab characterization of the instrument shows promising performance
Design and integration processes meet stringent performance goals
Abstract
Wide-Area Linear Optical Polarimeter (WALOP)-South is the first wide-field and survey-capacity polarimeter in the optical wavelengths. On schedule for commissioning in 2024, it will be mounted on the 1 m SAAO telescope in Sutherland Observatory, South Africa to undertake the PASIPHAE sky survey. PASIPHAE program will create the first polarimetric sky map in the optical wavelengths, spanning more than 2000 square degrees of the southern Galactic region. The innovative design of WALOP-South will enable it to measure the linear polarization (Stokes parameters and ), in a single exposure, of all sources in a field of view (FoV) of arcminutes-squared in the SDSS-r broadband and narrowband filters between 500-750 nm with 0.1 % polarization accuracy. The unique goals of the instrument place very stringent systems engineering goals, including on the performance of the…
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