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Effect of quantum deformed black hole on BH shadow in two-dimensional Dilaton gravity

High Energy Physics - Theory 2022-08-10 v1

Abstract

In recent years, the study of quantum effects near the event horizon of black hole (BH) has attracted extensive attention. It has become one of the important methods to explore BH quantum properties by using the related properties of the quantum deformed black hole. In this work, we study the effect of quantum deformed black hole on BH shadow in two-dimensional Dilaton gravity. In this model, quantum effects are reflected on the quantum correction parameter m. By calculation, we find that: (1) the shape of the shadow boundary of a rotating black hole is determined by the BH spin aa, the quantum correction parameter mm and the BH type parameter nn; (2) when the spin a=0a=0, the shape of the BH shadow is a perfect circle; when a0a\neq 0, the shape is distorted; if the quantum correction parameter m=0m=0, their shapes reduce to the cases of Schwarzschild BH and Kerr BH respectively; (3) the degree of distortion of the BH shadow is different for various quantum correction parameters mm; with the increase of the values of mm, the shadow will become more and more obvious; (4) the results of different BH type parameter nn differ greatly. Since the value of mm in actual physics should be very small, the current observations of EHT cannot distinguish quantum effect from BH shadow, and can only constrain the upper limit of mm. In future BH shadow measurements, it will be possible to distinguish quantum deformed black holes, which will help to better understand the quantum effects of BHs.

Keywords

Cite

@article{arxiv.2109.14245,
  title  = {Effect of quantum deformed black hole on BH shadow in two-dimensional Dilaton gravity},
  author = {Zhaoyi Xu and Meirong Tang},
  journal= {arXiv preprint arXiv:2109.14245},
  year   = {2022}
}

Comments

18 pages, 8 figures