Markovian master equation and thermodynamics of a two-level system in a strong laser field
Abstract
The recently developed technique combining the weak-coupling limit with the Floquet formalism is applied to a model of a two-level atom driven by a strong laser field and weakly coupled to heat baths. First, the case of a single electromagnetic bath at zero temperature is discussed and the formula for resonance fluorescence is derived. The expression describes the well-known Mollow triplet, but its details differ from the standard ones based on additional simplifying assumptions. The second example describes the case of two thermal reservoirs: an electromagnetic one at finite temperature and the second dephasing one, which can be realized as a phononic or buffer gas reservoir. It is shown using the developed thermodynamical approach that the latter system can work in two regimes depending on the detuning sign: a heat pump transporting heat from the dephasing reservoir to an electromagnetic bath or heating both, always at the expense of work supplied by the laser field.
- Publication:
-
Physical Review E
- Pub Date:
- January 2013
- DOI:
- arXiv:
- arXiv:1211.5665
- Bibcode:
- 2013PhRvE..87a2120S
- Keywords:
-
- 05.70.Ln;
- 05.30.-d;
- Nonequilibrium and irreversible thermodynamics;
- Quantum statistical mechanics;
- Quantum Physics
- E-Print:
- 10 pages, 1 figure, title and order of authors changed, minor corrections