Circular motion analogue Unruh effect in a thermal bath: Robbing from the rich and giving to the poor
arXiv:2303.12690 · doi:10.1088/1361-6382/acde3b
Abstract
The Unruh effect states that a uniformly linearly accelerated observer with proper acceleration experiences the Minkowski vacuum as a thermal state at temperature . An observer in uniform circular motion experiences a similar effective temperature, operationally defined in terms of excitation and de-excitation rates, and physically interpretable in terms of synchrotron radiation, but this effective temperature depends not just on the acceleration but also on the orbital speed and the excitation energy. In this paper we consider an observer in uniform circular motion when the Minkowski vacuum is replaced by an ambient thermal bath, and we address the interplay of ambient temperature, Doppler effect, acceleration, and excitation energy. Specifically, we consider a massless scalar field in spacetime dimensions, probed by an Unruh-DeWitt detector, in a Minkowski (rather than proper) time formulation: this setting describes proposed analogue spacetime systems in which the effect may become experimentally testable, and in which an ambient temperature will necessarily be present. We establish analytic results for the observer's effective temperature in several asymptotic regions of the parameter space and provide numerical results in the interpolating regions, finding that an acceleration effect can be identified even when the Doppler effect dominates the overall magnitude of the response. We also identify parameter regimes where the observer sees a temperature lower than the ambient temperature, experiencing a cooling Unruh effect.
24 pages, 5 figures. v2: references added, typos corrected. v3: references added, section 2 expanded after referee comments, typos corrected
References in corpus (13)
- Backreaction and Unruh effect: New insights from exact solutions of uniformly accelerated detectors
- Detection of acceleration radiation in a Bose-Einstein condensate
- Onset and decay of the 1+1 Hawking-Unruh effect: what the derivative-coupling detector saw
- Thermalization of particle detectors: The Unruh effect and its reverse
- Entanglement of two qubits in a relativistic orbit
- Radiative process of two entangled uniformly accelerated atoms in a thermal bath: a possible case of anti-Unruh event
- Entanglement dynamics for Unruh-DeWitt detectors interacting with massive scalar fields: The Unruh and anti-Unruh effects
- Genuine multipartite entanglement subject to the Unruh and anti-Unruh effects
- Dynamical behavior and geometric phase for a circularly accelerated two-level atom
- Entanglement generation for uniformly accelerated atoms assisted by environment-induced interatomic interaction and the loss of the anti-Unruh effect
- Influence of acceleration on multi-body entangled quantum states
- Anti-Hawking Phenomena around a Rotating BTZ Black Hole
- Anti-Unruh effect in the thermal background
Cited by in corpus (21)
- Particle Detectors from Localized Quantum Field Theories
- Ambient temperature versus ambient acceleration in the circular motion Unruh effect
- Third sound detectors in accelerated motion
- Derivative coupling in horizon brightened acceleration radiation: a quantum optics approach
- Wigner distributions in Rindler spacetime and nonvacuum Minkowski states
- Connecting the circular and drifted Rindler Unruh effects
- Stationary trajectories in Minkowski spacetimes
- Making two particle detectors in flat spacetime communicate quantumly
- Non-linear effective field theory simulators in two-fluid interfaces
- Significant circular Unruh effect at small acceleration
- Derivative coupling enables genuine entanglement harvesting in causal communication
- Duality between amplitude and derivative coupled particle detectors in the limit of large energy gaps
- How cosmological expansion affects communication between distant quantum systems
- Extensive manipulation of transition rates and substantial population inversion of rotating atoms inside a cavity
- Vacua in locally de Sitter cosmologies, and how to distinguish them
- Waiting around for Unruh
- Repeated measurements on non-replicable systems and their consequences for Unruh-DeWitt detectors
- Nondestructive optomechanical detection scheme for Bose-Einstein condensates
- Probing non-equilibrium steady states of the Klein-Gordon field with Unruh-DeWitt detectors
- N-Photon Emission from Uniform Acceleration
- Thermodynamic uncertainty relations for relativistic quantum thermal machines