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Light Trajectories and Thermal Shadows casted by Black Holes in a Cavity

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arxiv 2206.00615 v1 pith:KUZY7JNO submitted 2022-06-01 gr-qc hep-th

classification gr-qchep-th
keywords blackcavityholescastedlightradiusshadowsbehaviors
verification ladder T0 review T1 audit T2 compute T3 formal

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We explore the shadows and the photon rings casted by black holes in cavity. Placing the observer inside such an isothermal background, we examine the influence of the cavity temperature T_{cav} and the charge Q on the involved optical aspect. After studying the effect of the horizon radius by varying Q, we investigate the thermal behaviors of the black hole shadows in a cavity. For fixed charge values, we find that the shadow radius r_s increases by decreasing T_{cav}. Varying such a temperture, we discuss the associated energy emission rate. After that, we show that the curves in the r_s-T_{cav} plane share similarities with the G-T curves of the Anti de Sitter (AdS) black holes. Then, we study the trajectory of the light rays casted by black holes in a cavity. We further observe that the light trajectory behaviors are different than the ones of the non rotating black holes due to the cavity effect. Finally, we provide evidence for the existence of an universal ratio defined in terms of the photon sphere radius and the impact parameter. Concretely, we obtain a optical ratio \frac{b_{sp}}{r_{sp}} \sim \sqrt 3.

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  1. Constrained Deflection Angle and Shadows of Rotating Black Holes in Einstein-Maxwell-scalar Theory

    hep-th 2024-11 reject novelty 3.0 of 10

    For rotating Einstein-Maxwell-scalar black holes, the weak-field light deflection angle is decomposed into an Einstein-Maxwell-dilaton part and a part linear in the stringy coupling β, with EHT data favoring β < 0.4 f...

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