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The High Time Resolution Universe surveys for pulsars and fast transients

Published online by Cambridge University Press:  20 March 2013

Michael J. Keith*
Affiliation:
CSIRO Astronomy & Space Science, Australia Telescope National Facility, PO Box 78, Epping, NSW 1710, Australia email: mkeith@pulsarastronomy.net
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Abstract

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The High Time Resolution Universe survey for pulsars and transients is the first truly all-sky pulsar survey, taking place at the Parkes Radio Telescope in Australia and the Effelsberg Radio Telescope in Germany. Utilising multibeam receivers with custom built all-digital recorders the survey targets the fastest millisecond pulsars and radio transients on timescales of 64 μs to a few seconds. The new multibeam digital filter-bank system at has a factor of eight improvement in frequency resolution over previous Parkes multibeam surveys, allowing us to probe further into the Galactic plane for short duration signals. The survey is split into low, mid and high Galactic latitude regions. The mid-latitude portion of the southern hemisphere survey is now completed, discovering 107 previously unknown pulsars, including 26 millisecond pulsars. To date, the total number of discoveries in the combined survey is 135 and 29 MSPs These discoveries include the first magnetar to be discovered by it's radio emission, unusual low-mass binaries, gamma-ray pulsars and pulsars suitable for pulsar timing array experiments.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2013

References

Anderson, G. E.et al., 2012, ApJ, 751, 53Google Scholar
Archibald, A. M.et al., 2009, Science, 324, 1411Google Scholar
Backer, D. C. & Rankin, J. M., 1980, ApJS, 42, 143CrossRefGoogle Scholar
Bailes, M.et al., 2011, Science, 333, 1717CrossRefGoogle Scholar
Bates, S. D.et al., 2012, MNRAS, in press (arXive:1209.0793)Google Scholar
Bates, S. D.et al., 2011, MNRAS, 416, 2455Google Scholar
Burgay, M.et al., 2003, Nature, 426, 531CrossRefGoogle Scholar
Burke-Spolaor, S., Bailes, M., Ekers, R., Macquart, J.-P., & Crawford, F. III, 2011a, ApJ, 727, 18Google Scholar
Burke-Spolaor, S.et al., 2011b, MNRAS, 416, 2465Google Scholar
Cordes, J. M. & Lazio, T. J. W., 2002, NE2001. I. A New Model for the Galactic Distribution of Free Electrons and its Fluctuations, preprint (arXiv:astro-ph/0207156)Google Scholar
Edwards, R. T., Bailes, M., van Straten, W., & Britton, M. C., 2001, MNRAS, 326, 358CrossRefGoogle Scholar
Freire, P. C., Camilo, F., Kramer, M., Lorimer, D. R., Lyne, A. G., Manchester, R. N., & D'Amico, N., 2003, MNRAS, 340, 1359CrossRefGoogle Scholar
Gil, J. A. & Lyne, A. G., 1995, MNRAS, 276, L55Google Scholar
Hessels, J. W. T., Ransom, S. M., Stairs, I. H., Freire, P. C. C., Kaspi, V. M., & Camilo, F., 2006, Science, 311, 1901CrossRefGoogle Scholar
Hobbs, G. B.et al., 2009, Publ. Astr. Soc. Aust., 26, 103CrossRefGoogle Scholar
Jacoby, B. A., Bailes, M., Ord, S. M., Edwards, R. T., & Kulkarni, S. R., 2009, ApJ, 699, 2009CrossRefGoogle Scholar
Karastergiou, A., Kramer, M., Johnston, S., Lyne, A. G., Bhat, N. D. R., & Gupta, Y., 2002, A&A, 391, 247Google Scholar
Keith, M. J.et al., 2010, MNRAS, 409, 619Google Scholar
Keith, M. J.et al., 2012, MNRAS, 419, 1752CrossRefGoogle Scholar
Keith, M. J., Johnston, S., Levin, L., & Bailes, M., 2011, MNRAS, 416, 346Google Scholar
Kramer, M.et al., 2006, Science, 314, 97Google Scholar
Levin, L.et al., 2010, ApJ, 721, L33CrossRefGoogle Scholar
Levin, L.et al., 2012, MNRAS, 422, 2489Google Scholar
Lorimer, D. R., Bailes, M., McLaughlin, M. A., Narkevic, D. J., & Crawford, F., 2007, Science, 318, 777Google Scholar
Lyne, A. G.et al., 2004, Science, 303, 1153CrossRefGoogle Scholar
Manchester, R. N., Hobbs, G. B., Teoh, A., & Hobbs, M., 2005, AJ, 129, 1993Google Scholar
Manchester, R. N.et al., 2001, MNRAS, 328, 17Google Scholar
McMahon, P., 2008, Master's thesis, University of Cape TownGoogle Scholar
Ord, S. M., van Straten, W., Hotan, A. W., & Bailes, M., 2004, MNRAS, 352, 804Google Scholar
Radhakrishnan, V., Cooke, D. J., 1969, Astrophys. Lett., 3, 225Google Scholar
Staveley-Smith, L.et al., 1996, Proc. Astr. Soc. Aust., 13, 243Google Scholar
Verbiest, J. P. W.et al., 2009, MNRAS, 400, 951Google Scholar
Yan, W. M.et al., 2011, MNRAS, 467Google Scholar
You, X. P.et al., 2007, MNRAS, 378, 493CrossRefGoogle Scholar