Hostname: page-component-586b7cd67f-t7czq Total loading time: 0 Render date: 2024-11-26T21:25:57.776Z Has data issue: false hasContentIssue false

Non-Blazar Gamma-Ray Variables in the Galactic Plane: A New Class of Gamma-Ray Sources

Published online by Cambridge University Press:  14 August 2015

Marco Tavani*
Affiliation:
Columbia Astrophysics Laboratory, Columbia University, New York, NY 10027IFCTR-CNR, via Bassim 15, 1-20133, Milan, Italy

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.

We discuss recent detections of time-variable gamma-ray sources near the Galactic plane. A new bright gamma-ray transient was detected by EGRET in June 1995 near the Galactic center (GRO J1838-04). Also one of the most interesting unidentified gamma-ray sources in the plane, 2CG 135+1, was recently shown to be variable. Both GRO J1838-04 and 2CG 135+1 share many characteristics: variability of the gamma-ray flux within days/weeks, occasional peak gamma-ray emission of comparable flux (˜ 4 x 10-6ph cm-2s-1), absence of radio-loud spectrally-flat AGNs or prominent radio pulsars within their error boxes, lack of strong X-ray and/or hard X-ray counterparts. These characteristics do not match those of either gamma-ray blazars or isolated pulsars. Therefore, GRO J1838-04 and 2CG 135+1 provide strong evidence for the existence of a new class of variable gamma-ray sources.

Type
II. Joint Discussions
Copyright
Copyright © Kluwer 1998

References

1. Becker, R.H., White, R.L. & Edwards, A.L., 1991, ApJS, 75, 1.CrossRefGoogle Scholar
2. Gregory, P.C., et al., 1979, AJ, 84, 1030.CrossRefGoogle Scholar
3. Hartman, R.C., et al., 1996, ApJ, 461, 698.Google Scholar
4. Helfand, D., et al., 1992, ApJS, 80, 211.CrossRefGoogle Scholar
5. Kniffen, D., et al., 1997, ApJ, 486, 126.Google Scholar
6. Mattox, J.R., et al., 1997, ApJ, 481, 95.Google Scholar
7. McLaughlin, M.A., Mattox, J.R., Cordes, J.M. & Thompson, D.J., 1996, ApJ, 763.Google Scholar
8. Montigny, C.V., et al., 1995, ApJ, 440, 525.Google Scholar
9. Nice, D. & Sawyer, T., 1997, ApJ, 476, 261.Google Scholar
10. Perotti, F., et al., 1980, ApJ, 239, L49.Google Scholar
11. Ramanamurthy, P.V., et al., 1995, ApJ, 450, 791.Google Scholar
12. Mukherjee, R. et al., 1996, ApJ, 470, 831.Google Scholar
13. Strickman, M., et al., 1997, ApJ, in press.Google Scholar
14. Swanenburg, B.N., et al., 1981, ApJ, 243, L69.Google Scholar
15. Tavani, M., et al., 1996, A&AS, 120, 243.Google Scholar
16. Tavani, M. & Arons, J., 1997, ApJ, 477, 439.CrossRefGoogle Scholar
17. Tavani, M., et al., 1997, ApJ, 479, L109.Google Scholar
18. Tavani, M., et al., 1997, submitted to Nature.Google Scholar
19. Taylor, J.H., Manchester, R.N. & Lyne, A., 1993, ApJS, 88, 529.CrossRefGoogle Scholar
20. Thompson, D.J., et al., 1995, ApJS, 101, 259.CrossRefGoogle Scholar
21. Thompson, D.J., et al., 1996, ApJS, 107, 227.CrossRefGoogle Scholar
22. Thompson, D.J., et al., 1997, in the Proc. of the 4th Compton Symposium, AIP Conf. Proc. Series, in press.Google Scholar
23. van Dijk, R., et al., 1996, A&A, 315, 485.Google Scholar