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NEW CONSTRAINTS ON COSMIC POLARIZATION ROTATION FROMB-MODE POLARIZATION IN THE COSMIC MICROWAVE BACKGROUND

2014/04/30 by Sperello di Serego Alighieri, Wei-Tou Ni, Wei-Ping Pan · 17 citations
Physics and Astronomy · #Astronomy and Astrophysical Research #COSMIC cancer database #Cosmic microwave background #Cosmology and Gravitation Theories #Electrical and Electromagnetic Research #Gravitational lens #Gravitational wave #Multipole expansion #Planck #Polarization (electrochemistry) #Sky #Weak gravitational lensing #astro-ph.CO #gr-qc #hep-ph

paper · pdf · doi:10.1088/0004-637x/792/1/35

published in The Astrophysical Journal 792(1), 35 (IOP Publishing) · Accepted for publication by The Astrophysical Journal

arxiv created 2014/07/08 · openalex publication_date 2014/08/12 · arxiv updated 2014/08/14 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05

Abstract

SPTpol, POLARBEAR, and BICEP2 have recently measured the cosmic microwave background (CMB) B -mode polarization in various sky regions of several tens of square degrees and obtained BB power spectra in the multipole range 20–3000, detecting the components due to gravitational lensing and to inflationary gravitational waves. We analyze jointly the results of these three experiments and propose modifications to their analyses of the spectra to include in the model, in addition to the gravitational lensing and the inflationary gravitational wave components, and also the effects induced by the cosmic polarization rotation (CPR), if it exists within current upper limits. Although in principle our analysis would also lead to new constraints on CPR, in practice these can only be given on its fluctuations 〈δα 2 〉, since constraints on its mean angle are inhibited by the derotation which is applied by current CMB polarization experiments, in order to cope with the insufficient calibration of the polarization angle. The combined data fits from all three experiments (with 29% CPR–SPTpol correlation, depending on the theoretical model) gives the constraint 〈δα 2 〉 1/2 < 27.3 mrad (1 56), with r = 0.194 ± 0.033. These results show that the present data are consistent with no CPR detection and the constraint on CPR fluctuation is about 1 5. This method of constraining the CPR is new, is complementary to previous tests, which use the radio and optical/UV polarization of radio galaxies and the CMB E -mode polarization, and adds a new constraint for the sky areas observed by SPTpol, POLARBEAR, and BICEP2.

Citations