Collision energy of particles in the ergosphere of rotating black holes
Teoretičeskaâ i matematičeskaâ fizika, Tome 176 (2013) no. 1, pp. 60-68 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

We give new estimates for the possibility that a resonance appears in the center-of-mass system when particles collide in the ergospheres of rotating black holes—active galactic nuclei. We investigate a new effect: an increase in the center-of-mass energy depending on the particle angular momentum, which can occur at any point of the ergosphere.
Keywords: black hole, Kerr metric, geodesic.
Mots-clés : particle collision
@article{TMF_2013_176_1_a5,
     author = {A. A. Grib and Yu. V. Pavlov},
     title = {Collision energy of particles in the~ergosphere of rotating black holes},
     journal = {Teoreti\v{c}eska\^a i matemati\v{c}eska\^a fizika},
     pages = {60--68},
     year = {2013},
     volume = {176},
     number = {1},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/TMF_2013_176_1_a5/}
}
TY  - JOUR
AU  - A. A. Grib
AU  - Yu. V. Pavlov
TI  - Collision energy of particles in the ergosphere of rotating black holes
JO  - Teoretičeskaâ i matematičeskaâ fizika
PY  - 2013
SP  - 60
EP  - 68
VL  - 176
IS  - 1
UR  - http://geodesic.mathdoc.fr/item/TMF_2013_176_1_a5/
LA  - ru
ID  - TMF_2013_176_1_a5
ER  - 
%0 Journal Article
%A A. A. Grib
%A Yu. V. Pavlov
%T Collision energy of particles in the ergosphere of rotating black holes
%J Teoretičeskaâ i matematičeskaâ fizika
%D 2013
%P 60-68
%V 176
%N 1
%U http://geodesic.mathdoc.fr/item/TMF_2013_176_1_a5/
%G ru
%F TMF_2013_176_1_a5
A. A. Grib; Yu. V. Pavlov. Collision energy of particles in the ergosphere of rotating black holes. Teoretičeskaâ i matematičeskaâ fizika, Tome 176 (2013) no. 1, pp. 60-68. http://geodesic.mathdoc.fr/item/TMF_2013_176_1_a5/

[1] M. Bañados, J. Silk, S. M. West, Phys. Rev. Lett., 103:11 (2009), 111102, 4 pp. | DOI

[2] A. A. Grib, Yu. V. Pavlov, Pisma v ZhETF, 92:3 (2010), 147–151 | DOI

[3] A. A. Grib, Yu. V. Pavlov, Astropart. Phys., 34:7 (2011), 581–586 | DOI

[4] A. A. Grib, Yu. V. Pavlov, Grav. Cosmol., 17:1 (2011), 42–46 | DOI | MR | Zbl

[5] R. P. Kerr, Phys. Rev. Lett., 11:5 (1963), 237–238 | DOI | MR | Zbl

[6] R. H. Boyer, R. W. Lindquist, J. Math. Phys., 8:2 (1967), 265–281 | DOI | MR | Zbl

[7] S. Chandrasekar, Matematicheskaya teoriya chernykh dyr, Mir, M., 1986 | MR | Zbl

[8] A. A. Grib, Yu. V. Pavlov, O. F. Piattella, Grav. Cosmol., 18:1 (2012), 70–75, arXiv: 1203.4952 | DOI | MR | Zbl

[9] I. D. Novikov, V. P. Frolov, Fizika chernykh dyr, Nauka, M., 1986 | MR | Zbl

[10] E. Berti, V. Cardoso, L. Gualtieri, F. Pretorius, U. Sperhake, Phys. Rev. Lett., 103:23 (2009), 239001, 1 pp., arXiv: 0911.2243 | DOI

[11] T. Jacobson, T. P. Sotiriou, Phys. Rev. Lett., 104:2 (2010), 021101, 3 pp., arXiv: 0911.3363 | DOI

[12] K. S. Thorne, Astrophys. J., 191 (1974), 507–520 | DOI

[13] A. A. Grib, Yu. V. Pavlov, O. F. Piattella, Int. J. Modern Phys. A, 26:22 (2011), 3856–3867 | DOI | Zbl

[14] O. B. Zaslavskii, Class. Quantum Grav., 28:10 (2011), 105010, 7 pp., arXiv: 1011.0167 | DOI | MR | Zbl

[15] O. B. Zaslavskii, Phys. Rev. D, 84:2 (2011), 024007, 6 pp., arXiv: 1104.4802 | DOI

[16] O. B. Zaslavskii, Phys. Lett. B, 712:3 (2012), 161–164, arXiv: 1202.0565 | DOI

[17] R. M. Uold, Obschaya teoriya otnositelnosti, RUDN, M., 2008

[18] T. Harada, M. Kimura, Phys. Rev. D, 83:8 (2011), 084041, 9 pp., arXiv: 1102.3316 | DOI

[19] A. A. Grib, Yu. V. Pavlov, Modern Phys. Lett. A, 23:16 (2008), 1151–1159, arXiv: 0712.2667 | DOI | Zbl

[20] J. Abraham, P. Abreu, M. Aglietta et al. [The Pierre Auger Collaboration], Science, 318:5852 (2007), 938–943, arXiv: 0711.2256 | DOI

[21] P. Abreu, M. Aglietta, E. J. Ahn et al. [The Pierre Auger Collaboration], Astropart. Phys., 34:5 (2010), 314–326 | DOI