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MAXIMA: A balloon-borne cosmic microwave background anisotropy experiment

B. RabiiC. D. WinantJ. CollinsUniversity of California Department of Physics, , Berkeley, California 94720 and Space Sciences Laboratory, , Berkeley, California 94720A. T. LeeLawrence Berkeley National Laboratory Department of Physics, , Berkeley, California 94720; Space Sciences Laboratory, , Berkeley, California 94720; Center for Particle Astrophysics, , Berkeley, California 94720; and Physics Division, , Berkeley, California 94720P. L. RichardsM. E. AbroeUniversity of Minnesota School of Physics and Astronomy, , Twin Cities, Minneapolis, Minnesota 55455Shaul HananyUniversity of California School of Physics and Astronomy, , Twin Cities, Minneapolis, Minnesota 55455 and Center for Particle Astrophysics, , Berkeley, California 94720Bradley R. JohnsonUniversity of Minnesota School of Physics and Astronomy, , Twin Cities, Minneapolis, Minnesota 55455P. A. R. AdeCardiff University Physics Department, , Cardiff CF24 3 YB, United KingdomA. BalbiUniversita’ di Roma Tor Vergata , 00133 Roma, ItalyJ. J. BockCalifornia Institute of Technology , Pasadena, California 91109 and , Pasadena, California 91125J. BorrillLawrence Berkeley National Laboratory Computational Research Division, , Berkeley, California 94720 and Space Sciences Laboratory, , Berkeley California 94720R. StomporLawrence Berkeley National Laboratory Computational Research Division, , Berkeley, California 94720 and Space Sciences Laboratory, , Berkeley California 94720A. BoscaleriE. PascaleP. de BernardisUniversitá di Roma La Sapienza , I-00185 Roma, ItalyPedro G. FerreiraUniversity of California Astrophysics and Theoretical Physics, , Oxford OX1 3RH, United Kingdom and Center for Particle Astrophysics, , Berkeley, California 94720V. V. HristovCalifornia Institute of Technology , Pasadena, California 91125A. E. LangeCalifornia Institute of Technology , Pasadena, California 91125A. H. JaffeImperial College , London SW7 2BW, United Kingdom and Center for Particle Astrophysics, , Berkeley, California 94720C. B. NetterfieldUniversity of Toronto Physics Department, , Toronto, Ontario M5S 3H8, CanadaG. F. SmootUniversity of California Physics Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720 and Department of Physics, , Berkeley, California 94720Jiun-Huei Proty WuNational Taiwan University Department of Physics, , Taipei 106, Taiwan and Center for Particle Astrophysics, , Berkeley, California 94720
ABI

Аннотация

We describe the Millimeter wave Anisotropy eXperiment IMaging Array (MAXIMA), a balloon-borne experiment which measured the temperature anisotropy of the cosmic microwave background (CMB) on angular scales of 10′ to 5°. MAXIMA mapped the CMB using 16 bolometric detectors in spectral bands centered at 150, 240, and 410GHz, with 10′ resolution at all frequencies. The combined receiver sensitivity to CMB anisotropy was ∼40μKs. The bolometric detectors, which were cooled to 100mK, were a prototype of the detectors which will be used on the Planck Surveyor Satellite of the European Space Agency. Systematic parasitic contributions were controlled by using four uncorrelated spatial modulations, thorough cross-linking, multiple independent CMB observations, heavily baffled optics, and strong spectral discrimination. Pointing reconstruction was accurate to 1′, and absolute calibration was better than 4%. Two MAXIMA flights with more than 8.5h of CMB observations have mapped a total of 300deg2 of the sky in regions of negligible known foreground emission. MAXIMA results have been released in previous publications and shown to be consistent with the Wilkinson Microwave Anisotropy Probe. MAXIMA I maps, power spectra, and correlation matrices are publicly available at http://cosmology.berkeley.edu/maxima.

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