Imaging a semi-classical horizonless compact object with strong redshift
arXiv:2403.09388 · doi:10.1103/PhysRevD.109.104058
Abstract
The recent advancements in black hole imaging have opened a new era of probing horizon-scale physics with electromagnetic radiation. However, a feature of the observed images, a bright ring encircling a relatively dark region, has not sufficiently proved the existence of event horizons. It thus requires extreme care when studying the possibility of using such image features to examine quantum effects that may change the classical picture of black holes slightly or drastically. In this work, we investigate the image of a horizonless compact object, whose interior metric satisfies the 4D semi-classical Einstein equation non-perturbatively for the Planck constant, and whose entropy agrees with the Bekenstein-Hawking formula. Although the absence of an event horizon allows light rays to pass through the dense interior, the extremely strong redshift significantly darkens the image, making it almost identical to the classical black-hole image. In particular, if there is light emission a bit inside the surface of the object, the intensity around the inner shadow is slightly enhanced, which could be a future observable prediction to characterize the object. We also find through a phenomenological parameter that the image is further darkened due to interactions inside. Thus, the image is consistent with current observations, and the object could be a candidate for black holes in quantum theory.
15 pages, 10 figures. Matching published version
References in corpus (59)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- Black Holes: Complementarity or Firewalls?
- The information paradox: A pedagogical introduction
- Testing the nature of dark compact objects: a status report
- The fuzzball proposal for black holes: an elementary review
- Is the gravitational-wave ringdown a probe of the event horizon?
- Black Hole Shadows, Photon Rings, and Lensing Rings
- Shadows and strong gravitational lensing: a brief review
- Echoes of ECOs: gravitational-wave signatures of exotic compact objects and of quantum corrections at the horizon scale
- Gravitational Lensing
- Weak Gravitational Lensing and its Cosmological Applications
- Gravitational Lensing by Black Holes
- The Structure and Dynamics of the Sub-parsec Scale Jet in M87 Based on 50 VLBA Observations Over 17 Years at 43 GHz
- Light rings as observational evidence for event horizons: long-lived modes, ergoregions and nonlinear instabilities of ultracompact objects
- Black Hole Bound on the Number of Species and Quantum Gravity at LHC
- Shadows of spherically symmetric black holes and naked singularities
- The Shape of the Black Hole Photon Ring: A Precise Test of Strong-Field General Relativity
- Fate of gravitational collapse in semiclassical gravity
- Observing the Inner Shadow of a Black Hole: A Direct View of the Event Horizon
- Wormhole Shadows
- Shadow and Quasinormal Modes of a Rotating Loop Quantum Black Hole
- Slowly Decaying Waves on Spherically Symmetric Spacetimes and an Instability of Ultracompact Neutron Stars
- How to tell an accreting boson star from a black hole
- Anisotropic stars as ultracompact objects in General Relativity
- Testing loop quantum gravity from observational consequences of non-singular rotating black holes
- Gravastar Shadows
- Tests of Loop Quantum Gravity from the Event Horizon Telescope Results of Sgr A
- Asymptotic safety casts its shadow
- Shadows of boson and Proca stars with thin accretion disks
- Image of the Janis-Newman-Winicour naked singularity with a thin accretion disk
- Can we distinguish black holes from naked singularities by the images of their accretion disks?
- Lensing and dynamics of ultra-compact bosonic stars
- A novel gravitational lensing feature by wormholes
- A Self-consistent Model of the Black Hole Evaporation
- Shadows and photon rings of regular black holes and geonic horizonless compact objects
- Geometric modeling of M87* as a Kerr black hole or a non-Kerr compact object
- Exotic Compact Objects and the Fate of the Light-Ring Instability
- Reflection-asymmetric wormholes and their double shadows
- Novel shadows from the asymmetric thin-shell wormhole
- Probing microstructure of black hole spacetimes with gravitational wave echoes
- Observational signatures of wormholes with thin accretion disks
- Observational properties of relativistic fluid spheres with thin accretion disks
- Interior of Black Holes and Information Recovery
- Where does the physics of extreme gravitational collapse reside?
- Observational signatures of strongly naked singularities: image of the thin accretion disk
- Fuzzball Shadows: Emergent Horizons from Microstructure
- Black hole image encoding quantum gravity information
- New light rings from multiple critical curves as observational signatures of black hole mimickers
- Phenomenological Description of the Interior of the Schwarzschild Black Hole
- Universal signatures of singularity-resolving physics in photon rings of black holes and horizonless objects
- Gravitational lensing by a photon sphere in a Reissner-Nordström naked singularity spacetime in strong deflection limits
- Towards VLBI Observations of Black Hole Structure
- Imaging Topological Solitons: the Microstructure Behind the Shadow
- Horizonless spacetimes as seen by present and next-generation Event Horizon Telescope arrays
- Black Hole as a Quantum Field Configuration
- Asymptotic Black Holes
- Singularities in static spherically symmetric configurations of General Relativity with strongly nonlinear scalar fields
- Self-Gravity and Bekenstein-Hawking Entropy
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