English

Low Frequency Observations of the Moon with the Murchison Widefield Array

Cosmology and Nongalactic Astrophysics 2015-06-12 v1 Earth and Planetary Astrophysics Instrumentation and Methods for Astrophysics

Abstract

A new generation of low frequency radio telescopes is seeking to observe the redshifted 21 cm signal from the Epoch of Reionization (EoR), requiring innovative methods of calibration and imaging to overcome the difficulties of widefield low frequency radio interferometry. Precise calibration will be required to separate the small expected EoR signal from the strong foreground emission at the frequencies of interest between 80 and 300 MHz. The Moon may be useful as a calibration source for detection of the EoR signature, as it should have a smooth and predictable thermal spectrum across the frequency band of interest. Initial observations of the Moon with the Murchison Widefield Array 32 tile prototype show that the Moon does exhibit a similar trend to that expected for a cool thermally emitting body in the observed frequency range, but that the spectrum is corrupted by reflected radio emission from Earth. In particular, there is an abrupt increase in the observed flux density of the Moon within the internationally recognised Frequency Modulated (FM) radio band. The observations have implications for future low frequency surveys and EoR detection experiments that will need to take this reflected emission from the Moon into account. The results also allow us to estimate the equivalent isotropic power emitted by the Earth in the FM band and to determine how bright the Earth might appear at metre wavelengths to an observer beyond our own solar system.

Keywords

Cite

@article{arxiv.1211.1433,
  title  = {Low Frequency Observations of the Moon with the Murchison Widefield Array},
  author = {B. McKinley and F. Briggs and D. L. Kaplan and L. J. Greenhill and G. Bernardi and J. D. Bowman and A. de Oliveira-Costa and S. J. Tingay and B. M. Gaensler and D. Oberoi and M. Johnston-Hollitt and W. Arcus and D. Barnes and J. D. Bunton and R. C. Cappallo and B. E. Corey and A. Deshpande and L. deSouza and D. Emrich and R. Goeke and B. J. Hazelton and D. Herne and J. N. Hewitt and J. C. Kasper and B. B. Kincaid and R. Koenig and E. Kratzenberg and C. J. Lonsdale and M. J. Lynch and S. R. McWhirter and D. A. Mitchell and M. F. Morales and E. Morgan and S. M. Ord and J. Pathikulangara and T. Prabu and R. A. Remillard and A. E. E. Rogers and A. Roshi and J. E. Salah and R. J. Sault and N. Udaya Shankar and K. S. Srivani and J. Stevens and R. Subrahmanyan and R. B. Wayth and M. Waterson and R. L. Webster and A. R. Whitney and A. Williams and C. L. Williams and J. S. B. Wyithe},
  journal= {arXiv preprint arXiv:1211.1433},
  year   = {2015}
}

Comments

25 pages, 11 figures, to be published in The Astronomical Journal