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19 papers · 2 filters
Specific heat anomalies of open quantum systems
Gert-Ludwig Ingold, Peter Hänggi, Peter Talkner
The evaluation of the specific heat of an open, damped quantum system is a subtle issue. One possible route is based on the thermodynamic partition function which is the ratio of t…
The Casimir force between dissimilar mirrors and the role of the surface plasmons
A. Lambrecht, I. G. Pirozhenko
We investigate the Casimir force between two dissimilar plane mirrors the material properties of which are described by Drude or Lorentz models. We calculate analytically the short…
Probing optomechanical correlations between two optical beams down to the quantum level
P. Verlot, A. Tavernarakis, T. Briant +2
Quantum effects of radiation pressure are expected to limit the sensitivity of second-generation gravitational-wave interferometers. Though ubiquitous, such effects are so weak tha…
Reconstruction of non-classical cavity field states with snapshots of their decoherence
Samuel Deleglise, Igor Dotsenko, Clement Sayrin +4
The state of a microscopic system encodes its complete quantum description, from which the probabilities of all measurement outcomes are inferred. Being a statistical concept, the…
Microwave-Driven Atoms: From Anderson Localization to Einstein's Photoeffect
Alexej Schelle, Dominique Delande, Andreas Buchleitner
We study the counterpart of Anderson localization in driven one-electron Rydberg atoms. By changing the initial Rydberg state at fixed microwave frequency and interaction time, we…
The Casimir effect in the nanoworld
Cyriaque Genet, Astrid Lambrecht, Serge Reynaud
The Casimir effect is a force arising in the macroscopic world as a result of radiation pressure of vacuum fluctuations. It thus plays a key role in the emerging domain of nano-ele…