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A VLA search for the Geminga Pulsar at 74 and 326 MHz

Published online by Cambridge University Press:  26 May 2016

T. Joseph W. Lazio
Affiliation:
Naval Research Laboratory, Code 7213, Washington, DC 20375-5351 USA
Namir E. Kassim
Affiliation:
Naval Research Laboratory, Code 7213, Washington, DC 20375-5351 USA

Abstract

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We have used the VLA to image the location of the gamma-ray pulsar Geminga at 74 and 326 MHz. Upper limits to the pulse-averaged flux density, taking diffractive scintillation (DISS) into account, are S < 56 mJy (2σ; DISS quenched) at 74 MHz and S < 5 mJy (95% confidence) at 326 MHz. Intrinsic variability appears to be required in order to reconcile our upper limits with previous low-frequency detections.

Type
Part 7: Pulsars and other Compact Galactic Objects
Copyright
Copyright © Astronomical Society of the Pacific 2002 

References

Bertsch, D. L., et al. 1992, Nature, 357, 306 Google Scholar
Caraveo, P. A., et al. 1998, A&A, 329, L1 Google Scholar
Cornwell, T. J. & Perley, R. A. 1992, A&A, 261, 353 Google Scholar
Halpern, J. P. & Holt, S. S. 1992, Nature, 357, 222 CrossRefGoogle Scholar
Kassim, N. E. & Lazio, T. J. W. 2000, ApJ, 527, L101 Google Scholar
Kuz'min, A. D. & Losovskii, B. Ya. 1997, Astron. Lett., 23, 283 Google Scholar
Malofeev, V. M. & Malov, O. I. 1997, Nature, 389, 697 CrossRefGoogle Scholar
McLaughlin, M. A., et al. 1999, ApJ, 512, 929 CrossRefGoogle Scholar
Ramachandran, R., Deshpande, A. A., & Indrani, C. 1998, A&A, 339, 787 Google Scholar
Shitov, Yu. P. & Pugachev, V. D. 1997, New Astron., 3, 101 Google Scholar
Vats, H. O., et al. 1999, MNRAS, 302, L65 Google Scholar
Previously published in “Pulsar Astronomy — 2000 and Beyond”, ASP Conf. Series , 202, 239, 2000, Eds: Kramer, , Wex, & Wielebinski, Google Scholar