Thermal amplification of field-correlation harvesting
arXiv:1309.1425 · doi:10.1103/PhysRevA.88.062336
Abstract
We study the harvesting of quantum and classical correlations from a hot scalar field in a periodic cavity by a pair of spatially separated oscillator-detectors. Specifically, we utilize non-perturbative and exact (non-numerical) techniques to solve for the evolution of the detectors-field system and then we examine how the entanglement, Gaussian quantum discord, and mutual information obtained by the detectors change with the temperature of the field. While (as expected) the harvested entanglement rapidly decays to zero as temperature is increased, we find remarkably that both the mutual information and the discord can actually be increased by multiple orders of magnitude via increasing the temperature. We go on to explain this phenomenon by taking advantage of the translational invariance of the field and use this to make accurate predictions of the behavior of thermal amplification; by this we also introduce a new perspective on field-correlation harvesting that we feel is worthy of consideration in its own right. The thermal amplification of discord harvesting represents an exciting prospect for discord-based quantum computation, including its use in entanglement activation.
V2: Modified to match published version; minor text changes and updated references. 17 pages, 9 figures, RevTex 4.1
References in corpus (17)
- Necessary and sufficient condition for non-zero quantum discord
- Entanglement in continuous variable systems: Recent advances and current perspectives
- Robustness of quantum discord to sudden death
- Linking Quantum Discord to Entanglement in a Measurement
- All non-classical correlations can be activated into distillable entanglement
- Entangling Power of an Expanding Universe
- Operational Significance of Discord Consumption: Theory and Experiment
- Quantum discord bounds the amount of distributed entanglement
- Conservation law for distributed entanglement of formation and quantum discord
- Sustainable entanglement production from a quantum field
- Quantum discord as a resource in quantum communication
- Thermal bound entanglement in macroscopic systems and area laws
- Entanglement and discord: accelerated observations of local and global modes
- Quantum discord cannot be shared
- Vanishing Geometric Discord in Non-Inertial Frames
- Dynamics of Gaussian discord between two oscillators interacting with a common environment
- Generation of atom-atom correlations inside and outside the mutual light cone
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