Hostname: page-component-8448b6f56d-qsmjn Total loading time: 0 Render date: 2024-04-18T05:14:59.577Z Has data issue: false hasContentIssue false

Probing fundamental physics with pulsars

Published online by Cambridge University Press:  21 October 2010

Duncan R. Lorimer
Affiliation:
Department of Physics, 210 Hodges Hall, Morgantown, WV 26506, USA email: duncan.lorimer@mail.wvu.edu and maura.mclaughlin@mail.wvu.edu
Maura A. McLaughlin
Affiliation:
Department of Physics, 210 Hodges Hall, Morgantown, WV 26506, USA email: duncan.lorimer@mail.wvu.edu and maura.mclaughlin@mail.wvu.edu
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Pulsars provide a wealth of information about General Relativity, the equation of state of superdense matter, relativistic particle acceleration in high magnetic fields, the Galaxy's interstellar medium and magnetic field, stellar and binary evolution, celestial mechanics, planetary physics and even cosmology. The wide variety of physical applications currently being investigated through studies of radio pulsars rely on: (i) finding interesting objects to study via large-scale and targeted surveys; (ii) high-precision timing measurements which exploit their remarkable clock-like stability. We review current surveys and the principles of pulsar timing and highlight progress made in the rotating radio transients, intermittent pulsars, tests of relativity, understanding pulsar evolution, measuring neutron star masses and the pulsar timing array

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2010

References

Bertotti, B., Carr, B. J., & Rees, M. J. 1983, MNRAS, 203, 945CrossRefGoogle Scholar
Blandford, R. D., Narayan, R., & Romani, R. W. 1984, J. Astrophys. Astr., 5, 369Google Scholar
Boyles, J., et al. 2008, BAAS, 40, 208Google Scholar
Breton, R., et al. 2008, Science, 321, 104CrossRefGoogle Scholar
Champion, D. J., et al. 2008, Science, 324, 1411Google Scholar
Cordes, J. M. et al. 2006, ApJ, 637, 446CrossRefGoogle Scholar
Cordes, J. M. & McLaughlin, M. A. 2003, ApJ, 596, 1142CrossRefGoogle Scholar
Cordes, J. M. & Shannon, R. 2006, ApJ, 682, 1152CrossRefGoogle Scholar
Damour, T. & Taylor, J. H. 1992, Phys. Rev. D, 45, 1840CrossRefGoogle Scholar
Deneva, J.., et al. 2009, ApJ, in press (arXiv0811.2532)Google Scholar
Detweiler, S. 1979, ApJ, 234, 1100CrossRefGoogle Scholar
Foster, R. S. & Backer, D. C. 1990, ApJ, 361, 300CrossRefGoogle Scholar
Freire, P., Wolszczan, A., van den Berg, M., & Hessels, J. 2008, ApJ, 679, 1433CrossRefGoogle Scholar
Freire, P. 2009, in proceedings of “Neutron Stars and Gamma-Ray Bursts” meeting (arXiv0907.3219)Google Scholar
Goldreich, P., Julian, , 1969, ApJ, 157, 869CrossRefGoogle Scholar
Gopakumar, A., Magchi, M., & Ray, A. 2009, MNRAS, in press (arXiv0908.0974)Google Scholar
Hellings, R. W. & Downs, G. S. 1983, ApJ, 265, L39CrossRefGoogle Scholar
Hessels, J. et al. , 2008, AIP Conference Proceedings, 983, 613CrossRefGoogle Scholar
Jaffe, A. H. & Backer, D. C. 2003, ApJ, 583, 616CrossRefGoogle Scholar
Jenet, F. A. et al. 2005, ApJ, 625, 123CrossRefGoogle Scholar
Jenet, F. A. et al. 2006, ApJ, 653, 1571CrossRefGoogle Scholar
Joshi, B. et al. 2009, MNRAS, in press (arXiv0906.0228)Google Scholar
Kaspi, V. M., Taylor, J. H., & Ryba, M. 1994, ApJ, 428, 713CrossRefGoogle Scholar
Keane, E. F. 2009, MNRAS, submittedGoogle Scholar
Keith, M. et al. 2009, MNRAS, 395, 837CrossRefGoogle Scholar
Kramer, M. et al. 2006a, Science, 312, 549CrossRefGoogle Scholar
Kramer, M. et al. 2006b, Science, 314, 97CrossRefGoogle Scholar
Lattimer, J. & Prakash, M. 2007, Physics Reports, 442, 109CrossRefGoogle Scholar
Lorimer, D. R. 2008, Living Rev. Relativity, 11CrossRefGoogle Scholar
Lorimer, D. R. & Kramer, M. 2005, Handbook of Pulsar Astronomy (Cambridge University Press)Google Scholar
Lorimer, D. R. et al. 2006, ApJ, 640, 428CrossRefGoogle Scholar
Lyne, A. G. et al. 2004, Science, 303, 1153CrossRefGoogle Scholar
Lyne, A. G. 2008, AIP Conference Proceedings, 983, 561CrossRefGoogle Scholar
Lyne, A. G. et al. 2009, MNRAS, submitted.Google Scholar
McLaughlin, M. A. et al. 2004, ApJ, 616, L131CrossRefGoogle Scholar
McLaughlin, M. A. et al. 2006, Nature, 439, 817CrossRefGoogle Scholar
McLaughlin, M. A. 2009, in “Neutron Stars and PulsarsBecker, W., ed, Astrophys & Space Science Library, 357, 41CrossRefGoogle Scholar
McLaughlin, M. A. et al. 2009, MNRAS, in press.Google Scholar
Peebles, P. J. E. 1993, Principles of Physical Cosmology (New Jersey: Princeton)Google Scholar
Rea, N., et al. , 2008, MNRAS, 391, 663CrossRefGoogle Scholar
Sazhin, M. V. 1978, Sov. Astron., 22, 36Google Scholar
Stairs, I. H., Thorsett, S. E., & Arzoumanian, Z. 2004, Phys. Rev. Lett., 93, 141101CrossRefGoogle Scholar
Thorsett, S. E. & Chakrabarty, D. 1999, ApJ, 512, 288CrossRefGoogle Scholar
Zhang, B., Gil, J., & Dyks, J. 2007, MNRAS, 374, 1103CrossRefGoogle Scholar