Entanglement harvesting of accelerated detectors versus static ones in a thermal bath
arXiv:2208.14825 · doi:10.1103/PhysRevD.107.045010
Abstract
We make a detailed comparison between entanglement harvesting for uniformly accelerated detectors in vacuum and static ones in a thermal bath at the Unruh temperature and find that, for a small energy gap relative to the Heisenberg energy of the detectors, static detectors in the thermal bath can harvest more entanglement and possess a comparatively larger harvesting-achievable range than the uniformly accelerated ones; however, as the energy gap grows sufficiently large, the uniformly accelerated detectors are instead likely to harvest more entanglement and possess a relatively larger harvesting-achievable range than inertial ones in the thermal bath. In comparison with static detectors in vacuum, there exist phenomena of acceleration-assisted entanglement harvesting but never that of thermal-noise-assisted one. A notably interesting feature is that, although both the amount of entanglement harvested and the harvesting-achievable interdetector separation for static detectors in a thermal bath are always a decreasing function of temperature, they are not always so for uniformly accelerated detectors as acceleration (Unruh temperature) varies, suggesting the existence of the anti-Unruh effect in the entanglement harvesting phenomena of the accelerated detectors.
18 pages, 5 figures
References in corpus (16)
- Entangling Power of an Expanding Universe
- Relativistic Quantum Information in Detectors-Field Interactions
- Entanglement dynamics for uniformly accelerated two-level atoms
- On the relation between Unruh and Sokolov--Ternov effects
- Harvesting Entanglement with Detectors Freely Falling into a Black Hole
- The Unruh effect and entanglement generation for accelerated atoms near a reflecting boundary
- Thermalization of particle detectors: The Unruh effect and its reverse
- Entanglement harvesting for Unruh-DeWitt detectors in circular motion
- Unruh and analogue Unruh temperatures for circular motion in 3+1 and 2+1 dimensions
- Harvesting large scale entanglement in de Sitter space with multiple detectors
- On the physical meaning of the Unruh effect
- Entanglement harvesting in the presence of a reflecting boundary
- Does acceleration assist entanglement harvesting?
- Entanglement dynamics for Unruh-DeWitt detectors interacting with massive scalar fields: The Unruh and anti-Unruh effects
- Harvesting Entanglement by non-identical detectors with different energy gaps
- Probing long-range properties of vacuum altered by uniformly accelerating two spatially separated Unruh-DeWitt detectors
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- Probing Spacetime Topology and Superposition with Accelerated Detectors