English

Self-Calibration of CMB Polarization Experiments

Cosmology and Nongalactic Astrophysics 2012-12-27 v1 Instrumentation and Methods for Astrophysics

Abstract

Precision measurements of the polarization of the cosmic microwave background (CMB) radiation, especially experiments seeking to detect the odd-parity "B-modes", have far-reaching implications for cosmology. To detect the B-modes generated during inflation the Flux response and polarization angle of these experiments must be calibrated to exquisite precision. While suitable flux calibration sources abound, polarization angle calibrators are deficient in many respects. Man-made polarized sources are often not located in the antenna's far-field, have spectral properties that are radically different from the CMB's, are cumbersome to implement and may be inherently unstable over the (long) duration these searches require to detect the faint signature of the inflationary epoch. Astrophysical sources suffer from time, frequency and spatial variability, are not visible from all CMB observatories, and none are understood with sufficient accuracy to calibrate future CMB polarimeters seeking to probe inflationary energy scales of 101510^{15} GeV. CMB TBTB and EBEB modes, expected to identically vanish in the standard cosmological model, can be used to calibrate CMB polarimeters. By enforcing the observed EBEB and TBTB power spectra to be consistent with zero, CMB polarimeters can be calibrated to levels not possible with man-made or astrophysical sources. All of this can be accomplished without any loss of observing time using a calibration source which is spectrally identical to the CMB B-modes. The calibration procedure outlined here can be used for any CMB polarimeter.

Keywords

Cite

@article{arxiv.1211.5734,
  title  = {Self-Calibration of CMB Polarization Experiments},
  author = {Brian Keating and Meir Shimon and Amit Yadav},
  journal= {arXiv preprint arXiv:1211.5734},
  year   = {2012}
}
R2 v1 2026-06-21T22:43:39.245Z