Acceleration-assisted entanglement harvesting and rangefinding
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Publication:3387734
DOI10.1088/1367-2630/17/3/035001zbMath1452.81039arXiv1408.1395OpenAlexW1970581771WikidataQ59472142 ScholiaQ59472142MaRDI QIDQ3387734
Nicolas C. Menicucci, Grant Salton, Robert B. Mann
Publication date: 13 January 2021
Published in: New Journal of Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1408.1395
Quantum measurement theory, state operations, state preparations (81P15) Quantum coherence, entanglement, quantum correlations (81P40) Entanglement measures, concurrencies, separability criteria (81P42)
Related Items (27)
Scalar and fermionic Unruh Otto engines ⋮ Effects of horizons on entanglement harvesting ⋮ Dynamics of quantum entanglement in de Sitter spacetime and thermal Minkowski spacetime ⋮ Entanglement harvesting of three Unruh-DeWitt detectors ⋮ Entanglement harvesting for different gravitational wave burst profiles with and without memory ⋮ Measurement Uncertainty and Its Connection to Quantum Coherence in an Inertial Unruh–DeWitt Detector ⋮ Quantum circuit model for non-inertial objects: a uniformly accelerated mirror ⋮ Quantum entanglement in the background of cosmic string spacetime ⋮ Entanglement harvesting from conformal vacuums between two Unruh-DeWitt detectors moving along null paths ⋮ Accelerating Unruh-DeWitt detectors coupled with a spinor field ⋮ Focus on gravitational quantum physics ⋮ Quantum parameter estimation in the Unruh-DeWitt detector model ⋮ Harvesting correlations from vacuum quantum fields in the presence of a reflecting boundary ⋮ Can anti-Unruh effect survive the environment-induced interatomic interaction? ⋮ Birth and death of entanglement between two accelerating Unruh-DeWitt detectors coupled with a scalar field ⋮ Quantum signaling in relativistic motion and across acceleration horizons ⋮ Radiative processes of entangled detectors in rotating frames ⋮ Harvesting correlations in Schwarzschild and collapsing shell spacetimes ⋮ Entanglement harvesting in the presence of a reflecting boundary ⋮ The Unruh quantum Otto engine ⋮ Schrödinger’s cat for de Sitter spacetime ⋮ Harvesting entanglement from the black hole vacuum ⋮ Entanglement amplification from rotating black holes ⋮ Entanglement harvesting with moving mirrors ⋮ Entangling detectors in anti-De Sitter space ⋮ Precise space–time positioning for entanglement harvesting ⋮ Harvesting entanglement by non-identical detectors with different energy gaps
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