Does acceleration assist entanglement harvesting?
arXiv:2111.04392 · doi:10.1103/PhysRevD.105.085012
Abstract
We explore whether acceleration assists entanglement harvesting for a pair of uniformly accelerated detectors in three different acceleration scenarios, i.e., parallel, anti-parallel and mutually perpendicular acceleration, both in the sense of the entanglement harvested and harvesting-achievable separation between the two detectors. Within the framework of entanglement harvesting protocols and the Unruh-DeWitt model of detectors locally interacting with massless scalar fields via a Gaussian switching function with an interaction duration parameter, we find that, in the sense of the entanglement harvested, acceleration is a mixed blessing insofar as it increases the harvested entanglement for a large detector energy gap relative to the interaction duration parameter, whilst inhibiting the entanglement harvested for a small energy gap. Regarding the harvesting-achievable separation range between the detectors, we further find that for very small acceleration and large energy gap, both relative to the duration parameter, acceleration-assisted enhancement can happen in all three acceleration scenarios. This is in sharp contrast to what was argued previously: that the harvesting-achievable range can be enhanced only for anti-parallel acceleration. However, for a not too small acceleration relative to the duration parameter and an energy gap larger than the acceleration, we find that only detectors in parallel acceleration possess a harvesting-achievable range larger than those at rest.
18 pages, 5 figures
References in corpus (14)
- The Unruh effect and its applications
- Entanglement of Dirac fields in non-inertial frames
- Entangling Power of an Expanding Universe
- Entanglement dynamics for uniformly accelerated two-level atoms
- Harvesting Entanglement with Detectors Freely Falling into a Black Hole
- The Unruh effect and entanglement generation for accelerated atoms near a reflecting boundary
- Position dependent energy level shifts of an accelerated atom in the presence of a boundary
- Geometric phase for an accelerated two-level atom and the Unruh effect
- Entanglement harvesting for Unruh-DeWitt detectors in circular motion
- Harvesting large scale entanglement in de Sitter space with multiple detectors
- Entanglement harvesting in the presence of a reflecting boundary
- Entanglement of two qubits in a relativistic orbit
- Role of thermal field in entanglement harvesting between two accelerated Unruh-DeWitt detectors
- Entanglement dynamics for circularly accelerated two-level atoms coupled with electromagnetic vacuum fluctuations
Cited by in corpus (25)
- Harvesting mutual information from BTZ black hole spacetime
- Harvesting entanglement from the gravitational vacuum
- Basis-independent quantum coherence and its distribution under relativistic motion
- Genuine multipartite entanglement subject to the Unruh and anti-Unruh effects
- Entanglement harvesting of accelerated detectors versus static ones in a thermal bath
- Harvesting correlations from vacuum quantum fields in the presence of a reflecting boundary
- Harvesting Entanglement by non-identical detectors with different energy gaps
- Mutual information harvested by uniformly accelerated particle detectors
- Entanglement dynamics: Generalized master equation for uniformly accelerated two-level systems
- Minkowski vacuum entanglement and accelerated oscillator chains
- Are multiple reflecting boundaries capable of enhancing entanglement harvesting?
- Extraction of entanglement from quantum fields with entangled particle detectors
- Can boundary configuration be tuned to optimize directional quantum steering harvesting?
- Accelerating Unruh-DeWitt detectors coupled with a spinor field
- Quenched entanglement harvesting
- Atom-field dynamics in curved spacetime
- A new study of the Unruh effect
- Invisible extended Unruh-DeWitt detector
- Harvesting entanglement from the cylindrical gravitational wave spacetime
- A dynamic theory of entanglement for uniformly accelerated atoms
- Reveal the lost entanglement for accelerated atoms in the high-dimensional spacetime
- Harvesting entanglement from the Lorentz-violating quantum field vacuum in a dipolar Bose-Einstein condensate
- Probing Spacetime Topology and Superposition with Accelerated Detectors
- Entangled states dynamics of moving two-level atoms in a thermal field bath
- N-Photon Emission from Uniform Acceleration