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The optical design of the background emission anisotropy scanning telescope (BEAST)

Articolo
Data di Pubblicazione:
2005
Citazione:
The optical design of the background emission anisotropy scanning telescope (BEAST) / N. Figueiredo, M. R. F. Bersanelli, J. Childers, O. D’Arcangelo, D. Halevi, M. Janssen, K. Kedward, N. Lemaster, P. Lubin, N. Mandolesi, J. Marvil, P. Meinhold, J. Mejìa, A. Mennella, P. Natoli, H. O’Neil, A. Pina, M. Pryor, M. Sandri, A. Simonetto, C. Sozzi, C. Tello, F. Villa, T. Villela, B. Williams, C. A. Wuensche. - In: ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES. - ISSN 0067-0049. - 158:1(2005), pp. 118-123. [10.1086/429091]
Abstract:
We present the optical design of the Background Emission Anisotropy Scanning Telescope (BEAST), an off-axis Gregorian telescope designed to measure the angular distribution of the cosmic microwave background radiation (CMBR) at 30 and 41.5 GHz on angular scales ranging from 20' to 10°. The aperture of the telescope is 1.9 m, and our design meets the strict requirements imposed by the scientific goals of the mission: the beam size is 20' at 41.5 GHz and 26' at 30 GHz, while the illumination at the edge of the mirrors is lower than -30 dB for the central horn. The primary mirror is an off-axis section of a paraboloid, and the secondary an off-axis section of an ellipsoid. A spinning flat mirror located between the sky and the primary provides a two-dimensional chop by rotating the beams around an ellipse on the sky. BEAST uses a receiver array of cryogenic low noise InP High Electron Mobility Transistor (HEMT) amplifiers. The baseline array has seven horns matched to one amplifier each and one horn matched to two amplifiers (two polarizations) for a total of nine amplifiers. Two horns operate around 30 GHz, and six operate around 41.5 GHz. Subsequent campaigns will include 90 GHz and higher frequency channels.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
Cosmic microwave background; Cosmology: observations; Telescopes
Elenco autori:
N. Figueiredo, M. R. F. Bersanelli, J. Childers, O. D’Arcangelo, D. Halevi, M. Janssen, K. Kedward, N. Lemaster, P. Lubin, N. Mandolesi, J. Marvil, P. Meinhold, J. Mejìa, A. Mennella, P. Natoli, H. O’Neil, A. Pina, M. Pryor, M. Sandri, A. Simonetto, C. Sozzi, C. Tello, F. Villa, T. Villela, B. Williams, C. A. Wuensche
Autori di Ateneo:
BERSANELLI MARCO RINALDO FEDELE ( autore )
MENNELLA ANIELLO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/144417
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