Offset balancing in pseudo-correlation radiometers for CMB measurements
Abstract
Radiometeric CMB measurements need to be highly stable and this stability is best obtained with differential receivers. The residual 1/f noise in the differential output is strongly dependent on the radiometer input offset which can be cancelled using various balancing strategies. In this paper we discuss a software method implemented in the Planck-LFI pseudo-correlation receivers which uses a tunable "gain modulation factor, r, in the sky-load difference. Numerical simulations and experimental data show how proper tuning of the parameter r ensures a very stable differential output with knee frequencies of the order of few mHz. Various approaches to calculate r using the radiometer total power data are discussed with some examples relevant to Planck-LFI. Although the paper focuses on pseudo-correlation receivers and the examples are relative to Planck-LFI, the proposed method and its analysis is general and can be applied to a large class of differential radiometric receivers.
Keywords
Cite
@article{arxiv.astro-ph/0307558,
title = {Offset balancing in pseudo-correlation radiometers for CMB measurements},
author = {Aniello Mennella and Marco Bersanelli and Michael Seiffert and Danielle Kettle and Neil Roddis and Althea Wilkinson and Peter Meinhold},
journal= {arXiv preprint arXiv:astro-ph/0307558},
year = {2009}
}
Comments
12 pages, 8 figures, accepted for publication in A&A (updated version with few editorial changes)