On optical appearance of Einstein-Maxwell-Æther black holes surrounded by various accretions

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Mitra Darvishi , Malihe Heydari-Fard , Morteza Mohseni
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引用次数: 0

Abstract

We investigate the effects of the æther field and the electric charge on the observed shadow of two types of charged black holes in the Einstein-Maxwell-Æther theory. By considering the Einstein-Maxwell-Æther black holes surrounded by the static/infalling spherical, and optically and geometrically thin disk accretion flows, we study the shadow luminosities and the observed specific intensity of the image. We find that in the thin disk accretion model, the location and the emitted model of the accretion gas affect the optical appearance of charged Einstein-Æther black holes, while for the spherical accretion flows this is not observed. For a thin disk profile, we show that the observer will receive more intensity for an emitted model with Gaussian function when the innermost radiation radius lies in the innermost stable circular orbit. Comparing the results of the charged Einstein-Æther black holes with the neutral Einstein-Æther black holes, we show that the charged Einstein-Æther black holes have smaller dark area, but wider lensed ring and photon ring. We show that the Reissner–Nordstrom black hole has a larger dark area and narrower lensed ring and photon ring compared with the charged Einstein-Æther black holes.
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来源期刊
Chinese Journal of Physics
Chinese Journal of Physics 物理-物理:综合
CiteScore
8.50
自引率
10.00%
发文量
361
审稿时长
44 days
期刊介绍: The Chinese Journal of Physics publishes important advances in various branches in physics, including statistical and biophysical physics, condensed matter physics, atomic/molecular physics, optics, particle physics and nuclear physics. The editors welcome manuscripts on: -General Physics: Statistical and Quantum Mechanics, etc.- Gravitation and Astrophysics- Elementary Particles and Fields- Nuclear Physics- Atomic, Molecular, and Optical Physics- Quantum Information and Quantum Computation- Fluid Dynamics, Nonlinear Dynamics, Chaos, and Complex Networks- Plasma and Beam Physics- Condensed Matter: Structure, etc.- Condensed Matter: Electronic Properties, etc.- Polymer, Soft Matter, Biological, and Interdisciplinary Physics. CJP publishes regular research papers, feature articles and review papers.
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