Horizon quantum geometries and decoherence
arXiv:2507.18709 · doi:10.1103/qhd4-pj8w
Abstract
There is mounting theoretical evidence that black hole horizons induce decoherence on a quantum system, say a particle, put in a superposition of locations, with the decoherence functional, evaluated after closure of the superposition, increasing linearly with the time the superposition has been kept open. This phenomenon has been shown to owe its existence to soft modes, that is modes with very low frequencies, of the quantum fields -- sourced by the particle -- which pierce through the horizon, or also can be understood as coming from the interaction with the black hole described as a thermodynamic quantum system at Hawking's temperature. Here we investigate the effects of ensuing quantum aspects of the geometry itself of the horizon, in an effective perspective in which the quantum geometry of the horizon is captured by existence of a limit length or by horizon area quantisation. We show that the discreteness of the energy levels associated to the different geometric configurations might have strong impact on the results, in particular reducing the decoherence effects even to a negligible level in case of quanta of area or larger, with the Planck length.
21 pages, 6 figures, including 5 pages of appendices. v2: The text has been updated with minor changes to bring it into line with the published version; updated some references, extended the discussion at the beginning of sections 2 and 3
References in corpus (36)
- The quantum structure of spacetime at the Planck scale and quantum fields
- The physical interpretation of the spectrum of black hole quasinormal modes
- Quantum Superposition of Massive Objects and the Quantization of Gravity
- Effective Field Theory Approach to Gravitationally Induced Decoherence
- Gravitational Decoherence
- Gravitationally Mediated Entanglement: Newtonian Field vs. Gravitons
- A Master Equation for Gravitational Decoherence: Probing the Textures of Spacetime
- Locality in quantum gravity and string theory
- Gravitational wave echoes from black hole area quantization
- An effective field theory during inflation: reduced density matrix and its quantum master equation
- Potential gravitational-wave signatures of quantum gravity
- Decoherence, discord and the quantum master equation for cosmological perturbations
- Quantum gravitational decoherence of light and matter
- Observational constraints on quantum decoherence during inflation
- Minimal Length and Small Scale Structure of Spacetime
- Effective Field Theory out of Equilibrium: Brownian quantum fields
- Experiments testing macroscopic quantum superpositions must be slow
- Grin of the Cheshire cat: Entropy density of spacetime as a relic from quantum gravity
- Information Content of the Gravitational Field of a Quantum Superposition
- Two-slit diffraction with highly charged particles: Niels Bohr's consistency argument that the electromagnetic field must be quantized
- Benchmarking the cosmological master equations
- Killing Horizons Decohere Quantum Superpositions
- Distribution function of the Atoms of Spacetime and the Nature of Gravity
- Small scale structure of spacetime: van Vleck determinant and equi-geodesic surfaces
- Flux-area operator and black hole entropy
- Gravitational decoherence of photons
- Signature of Non-uniform Area Quantization on Black Hole Echoes
- Decoherence by warm horizons
- Local Description of Decoherence of Quantum Superpositions by Black Holes and Other Bodies
- Quantum metric for null separated events and spacetime atoms
- A gravitationally induced decoherence model using Ashtekar variables
- Understanding gravitationally induced decoherence parameters in neutrino oscillations using a microscopic quantum mechanical model
- Quantum Transparency of Near-extremal Black Holes
- On the distribution of the eigenvalues of the area operator in loop quantum gravity
- Conditions for graviton emission in the recombination of a delocalized mass
- Gravitationally induced decoherence of a scalar field: investigating the one-particle sector and its interplay with renormalisation