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ARCADE 2 Measurement of the Extra-Galactic Sky Temperature at 3-90 GHz

Authors :
Fixsen, D. J.
Kogut, A.
Levin, S.
Limon, M.
Lubin, P.
Mirel, P.
Seiffert, M.
Singal, J.
Wollack, E.
Villela, T.
Wuensche, C. A.
Fixsen, D. J.
Kogut, A.
Levin, S.
Limon, M.
Lubin, P.
Mirel, P.
Seiffert, M.
Singal, J.
Wollack, E.
Villela, T.
Wuensche, C. A.
Publication Year :
2009

Abstract

The ARCADE 2 instrument has measured the absolute temperature of the sky at frequencies 3, 8, 10, 30, and 90 GHz, using an open-aperture cryogenic instrument observing at balloon altitudes with no emissive windows between the beam-forming optics and the sky. An external blackbody calibrator provides an {\it in situ} reference. Systematic errors were greatly reduced by using differential radiometers and cooling all critical components to physical temperatures approximating the CMB temperature. A linear model is used to compare the output of each radiometer to a set of thermometers on the instrument. Small corrections are made for the residual emission from the flight train, balloon, atmosphere, and foreground Galactic emission. The ARCADE 2 data alone show an extragalactic rise of $50\pm7$ mK at 3.3 GHz in addition to a CMB temperature of $2.730\pm .004$ K. Combining the ARCADE 2 data with data from the literature shows a background power law spectrum of $T=1.26\pm 0.09$ [K] $(\nu/\nu_0)^{-2.60\pm 0.04}$ from 22 MHz to 10 GHz ($\nu_0=1$ GHz) in addition to a CMB temperature of $2.725\pm .001$ K.<br />Comment: 11 pages 5 figures Submitted to ApJ

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312033540
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1088.0004-637X.734.1.5