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Distinguishability of a naked singularity from a black hole in dynamics and radiative signatures
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Can a naked singularity (NkS) be distinguished from a black hole (BH)? We have investigated it with cutting-edge general relativistic magneto-hydrodynamic (GRMHD) simulations, followed by general relativistic radiation transfer (GRRT) calculation for magnetized accretion flow around NkS and BH. Based on our simulations, the accreting matter close enough to the singularity repels due to effective potential. This prevents matter from reaching a NkS and forms a quasi-spherical symmetric density distribution around it, unlike the accretion flows around a BH. We observe an order of magnitude higher mass flux through the jet and much stronger wind from a NkS than a BH. We found that the jet launching mechanism in a NkS differs significantly from that in a BH. In the horizon-scale images, a NKs shows a photon arc instead of a photon ring that is shown around a BH. In summary, the flow dynamics and radiative properties around an NkS are distinctly different from a BH. These properties would be useful to either confirm or rule out such exotic compact objects through future observations.
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Cited by 1 Pith paper
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Pseudo-Newtonian simulation of a thin accretion disk around a Reissner-Nordstr\"om naked singularity
A pseudo-Newtonian simulation of accretion onto a Reissner-Nordstrom naked singularity shows the disk thickening at the maximum of the orbital frequency and pushing matter over the top into a torus near the zero-gravi...
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