Signatures from the observed jet power and the radiative efficiency for rotating black holes in loop quantum gravity

Fuente: arXiv
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Main Authors: Cheng, Zhengwei, Chen, Songbai, Jing, Jiliang
Format: Preprint
Published: 2024
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author Cheng, Zhengwei
Chen, Songbai
Jing, Jiliang
author_facet Cheng, Zhengwei
Chen, Songbai
Jing, Jiliang
contents We investigate the radiative efficiency and jet power in the spacetime of a rotating black hole within the framework of loop quantum gravity (LQG), which includes an additional LQG parameter. The results show that as the LQG parameter increases, the radiative efficiency decreases for slowly rotating black holes while it increases for rapidly rotating black holes. Furthermore, the jet power is found to increase for different black hole spins. With the observed data from the well-known sources A0620-00, H1743-322, XTE J1550-564, GRS1124-683, GRO J1655-40, and GRS1915+105, we make some constraints on the black hole spin parameter and the LQG parameter. The presence of the LQG parameter broadens the allowed range of the black hole spin parameter for sources A0620-00, H1743-322, XTE J1550-564 and GRO J1655-40. However, for the source GRS 1915+105, there is no overlap between the allowed parameter regions, which implies that the rotating LQG black hole cannot simultaneously account for the observed jet power and the radiative efficiency as in other black hole spacetimes.
format Preprint
id arxiv_https___arxiv_org_abs_2409_06950
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Signatures from the observed jet power and the radiative efficiency for rotating black holes in loop quantum gravity
Cheng, Zhengwei
Chen, Songbai
Jing, Jiliang
General Relativity and Quantum Cosmology
We investigate the radiative efficiency and jet power in the spacetime of a rotating black hole within the framework of loop quantum gravity (LQG), which includes an additional LQG parameter. The results show that as the LQG parameter increases, the radiative efficiency decreases for slowly rotating black holes while it increases for rapidly rotating black holes. Furthermore, the jet power is found to increase for different black hole spins. With the observed data from the well-known sources A0620-00, H1743-322, XTE J1550-564, GRS1124-683, GRO J1655-40, and GRS1915+105, we make some constraints on the black hole spin parameter and the LQG parameter. The presence of the LQG parameter broadens the allowed range of the black hole spin parameter for sources A0620-00, H1743-322, XTE J1550-564 and GRO J1655-40. However, for the source GRS 1915+105, there is no overlap between the allowed parameter regions, which implies that the rotating LQG black hole cannot simultaneously account for the observed jet power and the radiative efficiency as in other black hole spacetimes.
title Signatures from the observed jet power and the radiative efficiency for rotating black holes in loop quantum gravity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2409.06950