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The Murchison Widefield Array: Design Overview

delete2009-08-01
delete343
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OA
AI
C
C. J. Lonsdale *
R
R. J. Cappallo
M
M. F. Morales
F
F. H. Briggs
L
L. Benkevitch
J
Judd D. Bowman
J
John D. Bunton
S
S. Burns
B
B. E. Corey
L
L. deSouza
S
Sheperd S. Doeleman
M
M. Derome
A
A. A. Deshpande
M
M.R. Gopala
L
L. J. Greenhill
D
D. Herne
J
Jacqueline N. Hewitt
P
P. A. Kamini
J
J. C. Kasper
B
B. B. Kincaid
J
J. Kocz
E
E. Kowald
E
E. Kratzenberg
D
Deepak Kumar
M
M. J. Lynch
M
Madhavi Srinivasan
M
Michael Matejek
D
D. A. Mitchell
E
E. Morgan
D
Divya Oberoi
S
S. M. Ord
J
Joseph Pathikulangara
T
T. Prabu
A
A. E. E. Rogers
D
D. Anish Roshi
J
J. E. Salah
R
R. J. Sault
N
N. Udaya Shankar
K
K. S. Srivani
J
J. Stevens
S
S. J. Tingay
A
Annino Vaccarella
M
M. Waterson
R
R. B. Wayth
R
R. L. Webster
A
A. R. Whitney
A
A. Williams
C
Christopher Williams
DOI:10.1109/JPROC.2009.2017564delete
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Abstract

Abstract

En 中文
The Murchison Widefield Array is a dipole-based aperture array synthesis telescope designed to operate in the 80-300 MHz frequency range. It is capable of a wide range of science investigations but is initially focused on three key science projects: detection and characterization of three-dimensional brightness temperature fluctuations in the 21 cm line of neutral hydrogen during the epoch of reionization (EoR) at redshifts from six to ten; solar imaging and remote sensing of the inner heliosphere via propagation effects on signals from distant background sources; and high-sensitivity exploration of the variable radio sky. The array design features 8192 dual-polarization broadband active dipoles, arranged into 512 tiles comprising 16 dipoles each. The tiles are quasi-randomly distributed over an aperture 1.5 km in diameter, with a small number of outliers extending to 3 km. All tile-tile baselines are correlated in custom field-programmable gate array based hardware, yielding a Nyquist-sampled instantaneous monochromatic uv coverage and unprecedented point spread function quality. The correlated data are calibrated in real time using novel position-dependent self-calibration algorithms. The array is located in the Murchison region of outback Western Australia. This region is characterized by extremely low population density and a superbly radio-quiet environment, allowing full exploitation of the instrumental capabilities.
Keywords:
Antenna arrays
astronomy
calibration
imaging
ionosphere
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Proceedings of the IEEE cover
Proceedings of the IEEE
IF:
25.9
Papers:
9.9K
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4.5W

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