Thermal and non-thermal signatures of the Unruh effect in Casimir-Polder forces
arXiv:1403.2437 · doi:10.1103/PhysRevLett.113.020403
Abstract
We show that Casimir-Polder forces between two relativistic uniformly accelerated atoms exhibit a transition from the short distance thermal-like behavior predicted by the Unruh effect, to a long distance non-thermal behavior, associated with the breakdown of a local inertial description of the system. This phenomenology extends the Unruh thermal response detected by a single accelerated observer to an accelerated spatially extended system of two particles, and we identify the characteristic length scale for this crossover with the inverse of the proper acceleration of the two atoms. Our results are derived separating at fourth order in perturbation theory the contributions of vacuum fluctuations and radiation reaction field to the Casimir-Polder interaction between two atoms moving in two generic stationary trajectories separated by a constant distance, and linearly coupled to a scalar field. The field can be assumed in its vacuum state or at finite temperature, resulting in a general method for the computation of Casimir-Polder forces in stationary regimes.
6 pages, 1 figure. Revised version
References in corpus (11)
- The Unruh effect and its applications
- Statistical mechanics and dynamics of solvable models with long-range interactions
- Measurement of the Temperature Dependence of the Casimir-Polder Force
- Current status of the Dynamical Casimir Effect
- Casimir-Lifshitz force out of thermal equilibrium
- Spontaneous excitation of an accelerated hydrogen atom coupled with electromagnetic vacuum fluctuations
- Position dependent energy level shifts of an accelerated atom in the presence of a boundary
- Fulling-Davies-Unruh effect and spontaneous excitation of an accelerated atom interacting with a quantum scalar field
- The Lamb shift in de Sitter spacetime
- Lamb Shift for static atoms outside a Schwarzschild black hole
- van der Waals Interaction Energy Between Two Atoms Moving With Uniform Acceleration
Cited by in corpus (42)
- Quantum coherence and geometric quantum discord
- Relativistic Quantum Optics: On the relativistic invariance of the light-matter interaction models
- GUP parameter from Maximal Acceleration
- Non-thermal effects of acceleration in the resonance interaction between two uniformly accelerated atoms
- Casimir forces and quantum friction from Ginzburg radiation in atomic BECs
- Resonance interaction energy between two accelerated identical atoms in a coaccelerated frame and the Unruh effect
- Radiative processes of two entangled atoms outside a Schwarzschild black hole
- q-generalized Tsallis thermostatistics in Unruh effect for mixed fields
- Entanglement dynamics for Unruh-DeWitt detectors interacting with massive scalar fields: The Unruh and anti-Unruh effects
- Dispersion Interactions between Neutral Atoms and the Quantum Electrodynamical Vacuum
- On the beta-decay of the accelerated proton and neutrino oscillations: a three-flavor description with CP violation
- Neutrino oscillations in the Unruh radiation
- Detecting the Curvature of de Sitter Universe with Two Entangled Atoms
- Nonextensive Tsallis statistics in Unruh effect for Dirac neutrinos
- Vacuum fluctuations and radiation reaction contributions to the resonance dipole-dipole interaction between two atoms near a reflecting boundary
- Spontaneous excitation of an atom in a Kerr spacetime
- Resonance energy transfer between two atoms in a conducting cylindrical waveguide
- Thermal and nonthermal scaling of the Casimir-Polder interaction in a black hole spacetime
- Dissipation suppression for an Unruh-DeWitt battery with a reflecting boundary
- Resonance dipole-dipole interaction between two accelerated atoms in the presence of a reflecting plane boundary
- Interatomic interaction of two ground-state atoms in vacuum: contributions of vacuum fluctuations and radiation reaction
- Fulling-Davies-Unruh effect for accelerated two-level single and entangled atomic systems
- Probing long-range properties of vacuum altered by uniformly accelerating two spatially separated Unruh-DeWitt detectors
- Collective dynamics of accelerated atoms
- Remarks on distinguishability of Schwarzschild spacetime and thermal Minkowski spacetime using Resonance Casimir-Polder interaction
- Hot Casimir Wormholes
- Van der Waals and resonance interactions between accelerated atoms in vacuum and the Unruh effect
- Casimir forces and quantum friction of finite-size atoms in relativistic trajectories
- Quantum thermal field fluctuation induced corrections to the interaction between two ground-state atoms
- How the mass of a scalar field influences Resonance Casimir-Polder interaction in Schwarzschild spacetime
- Casimir free energy for massive fermions: a comparative study of various approaches
- Atom-field dynamics in curved spacetime
- Equilibrium and Nonequilibrium Quantum Correlations Between Two Accelerated Detectors
- Time-dependent resonance interaction energy between two entangled atoms under non-equilibrium conditions
- High-Temperature Modifications of Charged Casimir Wormholes
- Single and entangled atomic systems in thermal bath and the Fulling-Davies-Unruh effect
- Distinguishing models of surface response through the self-energy of an electron
- Retarded resonance Casimir-Polder interaction of a uniformly rotating two-atom system
- Canonical Quantization of the U(1) Gauge Field in the right Rindler-wedge in the Rindler Coordinates
- Effects of acceleration on interatomic interactions
- Canonical Quantization of the U(1) Gauge Field in the Rindler Coordinates
- Resonance interaction due to quantum coherence