Performance of a continuously rotating half-wave plate on the POLARBEAR telescope
Abstract
A continuously rotating half-wave plate (CRHWP) is a promising tool to improve the sensitivity to large angular scales in cosmic microwave background (CMB) polarization measurements. With a CRHWP, single detectors can measure three of the Stokes parameters, , and , thereby avoiding the set of systematic errors that can be introduced by mismatches in the properties of orthogonal detector pairs. We focus on the implementation of CRHWPs in large aperture telescopes (i.e. the primary mirror is larger than the current maximum half-wave plate diameter of 0.5 m), where the CRHWP can be placed between the primary mirror and focal plane. In this configuration, one needs to address the intensity to polarization () leakage of the optics, which becomes a source of 1/f noise and also causes differential gain systematics that arise from CMB temperature fluctuations. In this paper, we present the performance of a CRHWP installed in the POLARBEAR experiment, which employs a Gregorian telescope with a 2.5 m primary illumination pattern. The CRHWP is placed near the prime focus between the primary and secondary mirrors. We find that the leakage is larger than the expectation from the physical properties of our primary mirror, resulting in a 1/f knee of 100 mHz. The excess leakage could be due to imperfections in the detector system, i.e. detector non-linearity in the responsivity and time-constant. We demonstrate, however, that by subtracting the leakage correlated with the intensity signal, the 1/f noise knee frequency is reduced to 32 mHz (39 for our scan strategy), which is very promising to probe the primordial B-mode signal. We also discuss methods for further noise subtraction in future projects where the precise temperature control of instrumental components and the leakage reduction will play a key role.
Keywords
Cite
@article{arxiv.1702.07111,
title = {Performance of a continuously rotating half-wave plate on the POLARBEAR telescope},
author = {Satoru Takakura and Mario Aguilar and Yoshiki Akiba and Kam Arnold and Carlo Baccigalupi and Darcy Barron and Shawn Beckman and David Boettger and Julian Borrill and Scott Chapman and Yuji Chinone and Ari Cukierman and Anne Ducout and Tucker Elleflot and Josquin Errard and Giulio Fabbian and Takuro Fujino and Nicholas Galitzki and Neil Goeckner-Wald and Nils W. Halverson and Masaya Hasegawa and Kaori Hattori and Masashi Hazumi and Charles Hill and Logan Howe and Yuki Inoue and Andrew H. Jaffe and Oliver Jeong and Daisuke Kaneko and Nobuhiko Katayama and Brian Keating and Reijo Keskitalo and Theodore Kisner and Nicoletta Krachmalnicoff and Akito Kusaka and Adrian T. Lee and David Leon and Lindsay Lowry and Frederick Matsuda and Tomotake Matsumura and Martin Navaroli and Haruki Nishino and Hans Paar and Julien Peloton and Davide Poletti and Giuseppe Puglisi and Christian L. Reichardt and Colin Ross and Praween Siritanasak and Aritoki Suzuki and Osamu Tajima and Sayuri Takatori and Grant Teply},
journal= {arXiv preprint arXiv:1702.07111},
year = {2017}
}
Comments
27 pages, 5 figures, 3 tables, published version in JCAP. Includes some minor corrections