
Spinning bound states of two and three black holes
Publication
, Journal Article
Britto-Pacumio, R; Maloney, A; Strominger, A; Stern, M
Published in: Journal of High Energy Physics
January 1, 2001
Bound states of BPS particles in five-dimensional N = 2 supergravity are counted by a topological index. We compute this bound state index exactly for two and three black holes as a function of the SU(2)L angular momentum. The required regulator for the infrared continuum of near-coincident black holes is chosen in accord with the enhanced superconformal symmetry.
Duke Scholars
Published In
Journal of High Energy Physics
DOI
ISSN
1029-8479
Publication Date
January 1, 2001
Volume
5
Issue
11
Start / End Page
1 / 19
Related Subject Headings
- Nuclear & Particles Physics
- 0206 Quantum Physics
- 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
- 0105 Mathematical Physics
Citation
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MLA
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Britto-Pacumio, R., Maloney, A., Strominger, A., & Stern, M. (2001). Spinning bound states of two and three black holes. Journal of High Energy Physics, 5(11), 1–19. https://doi.org/10.1088/1126-6708/2001/11/054
Britto-Pacumio, R., A. Maloney, A. Strominger, and M. Stern. “Spinning bound states of two and three black holes.” Journal of High Energy Physics 5, no. 11 (January 1, 2001): 1–19. https://doi.org/10.1088/1126-6708/2001/11/054.
Britto-Pacumio R, Maloney A, Strominger A, Stern M. Spinning bound states of two and three black holes. Journal of High Energy Physics. 2001 Jan 1;5(11):1–19.
Britto-Pacumio, R., et al. “Spinning bound states of two and three black holes.” Journal of High Energy Physics, vol. 5, no. 11, Jan. 2001, pp. 1–19. Scopus, doi:10.1088/1126-6708/2001/11/054.
Britto-Pacumio R, Maloney A, Strominger A, Stern M. Spinning bound states of two and three black holes. Journal of High Energy Physics. 2001 Jan 1;5(11):1–19.

Published In
Journal of High Energy Physics
DOI
ISSN
1029-8479
Publication Date
January 1, 2001
Volume
5
Issue
11
Start / End Page
1 / 19
Related Subject Headings
- Nuclear & Particles Physics
- 0206 Quantum Physics
- 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
- 0105 Mathematical Physics