Entanglement degradation as a tool to detect signatures of quantum gravity
arXiv:2308.04925 · doi:10.1103/PhysRevD.109.046012
Abstract
We investigate entanglement degradation in the vicinity of a quantum corrected black hole. We consider a biprtite system (Alice-Rob) with Alice freely falling (radially) into the event horizon of a quantum corrected black hole and Rob being in the vicinity of the event horizon of the black hole. We consider a maximally entangled state (in the Fock basis) and start with the basic assumption that Rob is an uniformly accelerated observer. We then give a pedagogical analysis of the relation involving the Minkowski vaccum state and Rindler number states. Following the analogy given in https://link.aps.org/doi/10.1103/PhysRevD.82.064006 {Phys. Rev. D 82 (2010) 064006}, we establish the relation between the Hartle-Hawking vacuum state and Boulware and Anti-Bouware number states from the Minkowski-Rindler relation. We then write down the quantum corrected black hole metric by making use of the near horizon approximation in an appropriate form. Next, we obtain the analytical forms of logarithmic negativity and mutual information and plot as a function of Rob's distance from the point. We observe that the entanglement degradation slows down due to the incorporation of quantum gravity corrections in the Schwarzschild black hole. This observation may lead to identification of quantum gravity signatures in future generation of advanced observational scenarios. We can also interpret this effect as a noisy quantum channel with an operator sum representation of a completely positive and trace preserving (CPTP) map. We then finally obtain the entanglement fidelity using this operator sum representation.
Comments are welcome
References in corpus (10)
- Exact evolution equation for the effective potential
- The Unruh effect and its applications
- Entanglement of Dirac fields in non-inertial frames
- Entangling Power of an Expanding Universe
- Entanglement in an expanding spacetime
- Continuous variable entanglement sharing in non-inertial frames
- Hawking radiation, Entanglement and Teleportation in background of an asymptotically flat static black hole
- Loss of Spin Entanglement For Accelerated Electrons in Electric and Magnetic Fields
- Quantum Entanglement of Electromagnetic Fields in Non-inertial Reference Frames
- Hawking-Unruh effect and the entanglement of two-mode squeezed states in Riemannian spacetime
Cited by in corpus (12)
- Lorentz violation alleviates gravitationally induced entanglement degradation
- Basis-independent quantum coherence and its distribution under relativistic motion
- Gaussian tripartite steering in Schwarzschild black hole
- Does acceleration always degrade quantum entanglement for tetrapartite Unruh-DeWitt detectors?
- Generation of quantum entanglement in superposed diamond spacetime
- Nonseparability of multipartite systems in dilaton black hole
- Quantum steering for different types of Bell-like states in gravitational background
- Multiqubit coherence of mixed states near event horizon
- Entropic uncertainty and coherence in Einstein-Gauss-Bonnet gravity
- Bosonic and fermionic mutual information of N-partite systems in dilaton black hole background
- Non-monotonic evolution of multipartite entanglement under the Unruh effect
- Do maximally entangled states always have an advantage over non-maximally entangled states in Schwarzschild black hole?