Abstract
Aims. We study the precession of accretion disks in the context of gamma-ray burst inner engines. Methods. With an accretion disk model that allows for neutrino cooling, we evaluate the possible periods of disk precession and nutation due to the Lense-Thirring effect. Results. Assuming jet ejection perpendicular to the disk midplane and a typical intrinsic time dependence for the burst, we find possible gamma-ray light curves with a temporal microstructure similar to what is observed in some subsamples. Conclusions. We conclude that the precession and nutation of a neutrino-cooled accretion disk in the burst engine might be responsible for some events, especially those with a slow rise and a fast decay. © ESO 2006.
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Reynoso, M. M., Romero, G. E., & Sampayo, O. A. (2006). Precession of neutrino-cooled accretion disks in gamma-ray burst engines. Astronomy and Astrophysics, 454(1), 11–16. https://doi.org/10.1051/0004-6361:20054564
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