Spontaneous excitation of a centripetally accelerated atom coupled to electromagnetic vacuum fluctuations near a reflecting boundary
arXiv:2509.16488 · doi:10.1103/dlbb-tnjc
Abstract
We investigate the rate of change of the mean atomic energy for centripetally accelerated atoms interacting with electromagnetic vacuum fluctuations near a reflecting boundary, using the Dalibard-Dupont-Roc-Cohen-Tannoudji formalism. The distinct contributions from vacuum fluctuations and radiation reaction are analyzed separately. Our results reveal that, when the centripetal acceleration significantly exceeds the characteristic acceleration set by the atomic transition frequency, vacuum fluctuations dominates over radiation reaction, irrespective of the atom-boundary distance and the atomic polarization. In the near-zone regime, where the atom-boundary distance is much smaller than both the characteristic length associated with the acceleration and the transition wavelength of the atom, the boundary introduces substantial corrections to the rate of change of the mean atomic energy. These corrections are comparable in magnitude to those in free space and exhibit strong dependence on the atomic polarization. Remarkably, in the intermediate and far regions, contributions stemming from the combined effects of the boundary and acceleration can become the leading and subleading terms, respectively. An acceleration-independent term also arises from their interplay. These findings highlight the significant interplay between acceleration and the presence of a boundary in shaping atomic radiative properties and may have potential implications for experimentally probing the circular Unruh effect.
17 pages, 1 figure, published version
References in corpus (13)
- Spontaneous excitation of an accelerated hydrogen atom coupled with electromagnetic vacuum fluctuations
- Spontaneous absorption of an accelerated hydrogen atom near a conducting plane in vacuum
- Position dependent energy level shifts of an accelerated atom in the presence of a boundary
- Do static atoms outside a Schwarzschild black hole spontaneously excite?
- Fulling-Davies-Unruh effect and spontaneous excitation of an accelerated atom interacting with a quantum scalar field
- Spontaneous excitation of a uniformly accelerated atom coupled with vacuum Dirac field fluctuations
- The Lamb shift in de Sitter spacetime
- Dynamical behavior and geometric phase for a circularly accelerated two-level atom
- Modification of energy shifts of atoms by the presence of a boundary in a thermal bath and the Casimir-Polder force
- Entanglement dynamics for circularly accelerated two-level atoms coupled with electromagnetic vacuum fluctuations
- Response of a uniformly accelerated detector to massless Rarita-Schwinger fields in vacuum
- Spontaneous excitation of an accelerated atom coupled with quantum fluctuations of spacetime
- Lamb shift as a witness for quantum noninertial effects