arXiv Analytics

Sign in

arXiv:0707.4158 [quant-ph]AbstractReferencesReviewsResources

Spontaneous emission from a two--level atom tunneling in a double--well potential

Daniel Braun, John Martin

Published 2007-07-27, updated 2007-10-26Version 2

We study a two-level atom in a double--well potential coupled to a continuum of electromagnetic modes (black body radiation in three dimensions at zero absolute temperature). Internal and external degrees of the atom couple due to recoil during emission of a photon. We provide a full analysis of the problem in the long wavelengths limit up to the border of the Lamb-Dicke regime, including a study of the internal dynamics of the atom (spontaneous emission), the tunneling motion, and the electric field of the emitted photon. The tunneling process itself may or may not decohere depending on the wavelength corresponding to the internal transition compared to the distance between the two wells of the external potential, as well as on the spontaneous emission rate compared to the tunneling frequency. Interference fringes appear in the emitted light from a tunneling atom, or an atom in a stationary coherent superposition of its center--of--mass motion, if the wavelength is comparable to the well separation, but only if the external state of the atom is post-selected.

Comments: 24 pages, 4 figures; improved discussion on the limitations of the theory
Journal: Phys. Rev. A 77, 032102 (2008)
Categories: quant-ph
Subjects: 03.65.Xp, 03.65.Yz
Related articles: Most relevant | Search more
arXiv:2407.05304 [quant-ph] (Published 2024-07-07)
Leggett-Garg Inequality for Bosons in a Double-Well Potential
arXiv:quant-ph/0501165 (Published 2005-01-27)
Tunnelling of condensate magnetization in a double-well potential
arXiv:quant-ph/9810094 (Published 1998-10-30)
Spatial fragmentation of a Bose-Einstein condensate in a double-well potential