Shadow of a Noncommutative Thin-Shell Gravastar
arXiv:2605.03897 · doi:10.1016/j.aop.2026.170697
Abstract
One of the main challenges in astronomy is the direct observation of black holes. However, distinguishing black holes from ultra-compact horizonless objects through photon observations can be difficult, since the latter may also possess unstable circular photon orbits. An example of an Ultra-Compact Object is a Gravastar (gravitational vacuum star), initially proposed by Mazur and Mottola. For definition purposes, we construct a spherically symmetric thin-shell gravastar model within a noncommutative model, in which these effects are integrated by a Lorentzian distribution of the energy density with a minimum width . The model is constructed using the cut-and-paste technique to connect a nonsingular de Sitter interior to a noncommutative Schwarzschild exterior, satisfying the Israel junction conditions on the interface hypersurface . We examine the stability of the model through its energy conditions, highlighting the influence of the noncommutative parameter on its behavior. {Model stability was also investigated using the parameter , derived from the linearized stability analysis.} We also show that, owing to noncommutativity, the photon trajectories and deflection angles change as the noncommutative parameter increases. Our proposed gravastar model, with noncommutative geometry on its exterior, can be considered a stable and viable alternative to the charged black hole in the context of this type of gravity.
References in corpus (63)
- The Cosmological Constant and Dark Energy
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- Cosmological Constant - the Weight of the Vacuum
- The Case for a Positive Cosmological Lambda-term
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- The Cosmic Triangle: Revealing the State of the Universe
- Noncommutative geometry inspired Schwarzschild black hole
- Gravitational Vacuum Condensate Stars
- Primordial Black Holes
- Shadows and strong gravitational lensing: a brief review
- Stable gravastars - an alternative to black holes?
- First M87 Event Horizon Telescope Results. VII. Polarization of the Ring
- Shadow of a black hole surrounded by dark matter
- Linearized stability analysis of thin-shell wormholes with a cosmological constant
- Silhouette of M87*: A new window to peek into the world of hidden dimensions
- Low-energy Limits on the Antisymmetric Tensor Field Background on the Brane and on the Non-commutative Scale
- Gravitational wave signatures of the absence of an event horizon. I. Nonradial oscillations of a thin-shell gravastar
- QED Effect on Black Hole Shadow
- Did GW150914 produce a rotating gravastar?
- Gravastar Shadows
- Testing spatial noncommutativiy via the Aharonov-Bohm effect
- Quantum Schwarzschild geometry in effective-field-theory models of gravity
- Understanding photon sphere and black hole shadow in dynamically evolving spacetimes
- Tidal deformability and I-Love-Q relations for gravastars with polytropic thin shells
- The shadows and observational appearance of a noncommutative black hole surrounded by various profiles of accretions
- Charged Gravastars in Modified Gravity
- I-Love-Q relations for a gravastar and the approach to the black-hole limit
- Gravastars in Gravity
- Shadow of a black hole at cosmological distance
- Gravastar energy conditions revisited
- Novel shadows from the asymmetric thin-shell wormhole
- Flowing along the edge: spinning up black holes in AdS spacetimes with test particles
- Linearized stability analysis of gravastars in noncommutative geometry
- Gravitational-wave signatures of the absence of an event horizon. II. Extreme mass ratio inspirals in the spacetime of a thin-shell gravastar
- Absorption and scattering of a noncommutative black hole
- The Optical Appearance of Charged Four-Dimensional Gauss-Bonnet Black Hole with Strings Cloud and Non-Commutative Geometry Surrounded by Various Accretions Profiles
- Charged Thin-shell Gravastars in Noncommutative Geometry
- Generic thin-shell gravastars
- Dynamical features and shadows of quantum Schwarzschild black hole in effective field theories of gravity
- Shadow Images of a Rotating Dyonic Black Hole with a Global Monopole Surrounded by Perfect Fluid
- Hunting extra dimensions in the shadow of Sgr A*
- Stable and self consistent charged gravastar model within the framework of gravity
- Noncommutative Schwarzschild black hole surrounded by quintessence: Thermodynamics, Shadows and Quasinormal modes
- Thin-Shell Gravastar Model in Gravity
- Observational imprints of gravastars from accretion disks and hot-spots
- Absorption, scattering and shadow by a noncommutative black hole with global monopole
- Effects of non-commutative geometry on black hole properties
- Exploring Non--commutativity as a Perturbation in the Schwarzschild Black Hole: Quasinormal Modes, Scattering, and Shadows
- Noncommutative correction to the entropy of Schwarzschild black hole with GUP
- Gravitational Vacuum Condensate Stars
- Collapsing rotating shells in Myers-Perry-AdS spacetime: A perturbative approach
- Noncommutative correction to the entropy of BTZ black hole with GUP
- Stable three-dimensional (un)charged AdS gravastars in gravity's rainbow
- Accretion disks, quasars and cosmology: meandering towards understanding
- A Non-Commutative Kalb-Ramond Black Hole
- Geodesics, accretion disk, gravitational lensing, time delay, and effects on neutrinos induced by a non-commutative black hole
- Constructing noncommutative black holes
- Non-commutativity in Hayward spacetime
- Stability analysis of Lower Dimensional Gravastars in noncommutative geometry
- Wormhole Cosmic Censorship
- Quasinormal mode spectra for odd parity perturbations in spacetimes with smeared matter sources
- Thin-shell gravastar in a noncommutative BTZ geometry
- Superradiance scattering of scalar, electromagnetic, and gravitational fields and thin accretion disk around non-commutating Kerr black hole