The Simons Observatory (SO) is a new experiment that aims to measure the cosmic microwave background (CMB) in temperature and polarization. SO will measure the polarized sky over a large range of microwave frequencies and angular scales using a combination of small (∼0.5m) and large (∼6m) aperture telescopes and will be located in the Atacama Desert in Chile. This work is part of a series of papers studying calibration, sensitivity, and systematic errors for SO. In this paper, we discuss current efforts to model optical systematic effects, how these have been used to guide the design of the SO instrument, and how these studies can be used to inform instrument design of future experiments like CMB-S4. While optical systematics studies are underway for both the small aperture and large aperture telescopes, we limit the focus of this paper to the more mature large aperture telescope design for which our studies include: pointing errors, optical distortions, beam ellipticity, cross-polar response, instrumental polarization rotation and various forms of sidelobe pickup.
@article{arxiv.1808.05152,
title = {Studies of Systematic Uncertainties for Simons Observatory: Optical Effects and Sensitivity Considerations},
author = {Patricio A. Gallardo and Jon Gudmundsson and Brian J. Koopman and Frederick T. Matsuda and Sara M. Simon and Aamir Ali and Sean Bryan and Yuji Chinone and Gabriele Coppi and Nicholas Cothard and Mark J. Devlin and Simon Dicker and Giulio Fabbian and Nicholas Galitzki and Charles A. Hill and Brian Keating and Akito Kusaka and Jacob Lashner and Adrian T. Lee and Michele Limon and Philip D. Mauskopf and Jeff McMahon and Federico Nati and Michael D. Niemack and John L. Orlowski-Scherer and Stephen C. Parshley and Giuseppe Puglisi and Christian L Reichardt and Maria Salatino and Suzanne Staggs and Aritoki Suzuki and Eve M. Vavagiakis and Edward J. Wollack and Zhilei Xu and Ningfeng Zhu},
journal= {arXiv preprint arXiv:1808.05152},
year = {2018}
}
Comments
Poster presented at SPIE Astronomical Telescopes and Instrumentation 2018