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BICEP2/KECK ARRAY. VII. MATRIX BASEDE/BSEPARATION APPLIED TO BICEP2 AND THE KECK ARRAY

Authors :
Ki Won Yoon
Grant Teply
S. Fliescher
Z. K. Staniszewski
Roger O'Brient
Angiola Orlando
B. P. Crill
Howard Hui
R. V. Sudiwala
Calvin B. Netterfield
Donald V. Wiebe
J. E. Tolan
Brian Keating
W. L. K. Wu
Jake Connors
Steven J. Benton
S. R. Hildebrandt
R. W. Ogburn
C. L. Wong
John M Kovac
Kirit Karkare
J. Kang
H. T. Nguyen
J. Willmert
Kent D. Irwin
A. D. Turner
E. M. Leitch
S. A. Kernasovskiy
J. P. Kaufman
Lionel Duband
Gene C. Hilton
I. Buder
A. C. Weber
Victor Buza
Bryan Steinbach
R. Bowens-Rubin
Toshiya Namikawa
Colin A. Bischoff
J. A. Grayson
Kate D. Alexander
Jeffrey P. Filippini
Justus A. Brevik
C. Pryke
Chao-Lin Kuo
Carole Tucker
S. Richter
E. Karpel
James J. Bock
K. L. Thompson
Mark Halpern
C. D. Sheehy
Sarah M. Harrison
Denis Barkats
Zeeshan Ahmed
Cora Dvorkin
R. Schwarz
E. Bullock
S. Kefeli
Peter A. R. Ade
Abigail G. Vieregg
K. G. Megerian
Randol W. Aikin
M. Lueker
Source :
The Astrophysical Journal. 825:66
Publication Year :
2016
Publisher :
American Astronomical Society, 2016.

Abstract

A linear polarization field on the sphere can be uniquely decomposed into an E-mode and a B-mode component. These two components are analytically defined in terms of spin-2 spherical harmonics. Maps that contain filtered modes on a partial sky can also be decomposed into E-mode and B-mode components. However, the lack of full sky information prevents orthogonally separating these components using spherical harmonics. In this paper, we present a technique for decomposing an incomplete map into E and B-mode components using E and B eigenmodes of the pixel covariance in the observed map. This method is found to orthogonally define E and B in the presence of both partial sky coverage and spatial filtering. This method has been applied to the BICEP2 and the Keck Array maps and results in reducing E to B leakage from LCDM E-modes to a level corresponding to a tensor-to-scalar ratio of $r<br />21 pages, 23 figures, minor updates to reflect accepted version

Details

ISSN :
15384357
Volume :
825
Database :
OpenAIRE
Journal :
The Astrophysical Journal
Accession number :
edsair.doi.dedup.....0310e2cc0f2f588b120bd0e84e34e478