In a recent microlaser experiment [K. An et al., Phys. Rev. Lett. 73, 3375 (1994)], a thresholdlike transition of intracavity mean photon number as a function of intracavity mean atom number has been observed. In this paper the behavior is explored with quantum trajectory simulations. It is shown that the transition is caused by enhanced atom-cavity Rabi interaction due to the increase of the intracavity photon number as the intracavity atom number is increased. The transition is further accentuated by the position-dependent variation of the coupling constant in the Fabry-Pérot cavity. In addition, it is demonstrated that multiatom collective effects are negligible in the microlaser under consideration, in which atoms are injected into the ...
We examine the competition among one- and two-photon processes in an ultracold, three-level atom und...
We investigate signals of trapping states in the micromaser system in terms of the average number of...
Using laser-cooled atoms strongly coupled to a high finesse optical cavity, we have performed real-t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographi...
We report the observation of multiple laser thresholds in the many-atom cavity QED microlaser. Trave...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...
We describe a one-atom microlaser involving Poissonian input of atoms with a fixed flight time throu...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Phase diagrams of the micromaser system are mapped out in terms of the physical parameters at hand l...
Recent experimental advances in the field of cavity quantum electrodynamics (QED) have opened new po...
Journals published by the American Physical Society can be found at http://publish.aps.org/We study ...
Conventional lasers (from table-top systems to microscopic devices) typically operate in the so-call...
Conventional lasers (from table-top systems to microscopic devices) typically operate in the so-call...
We examine the competition among one- and two-photon processes in an ultra-cold, three-level atom un...
We examine the competition among one- and two-photon processes in an ultracold, three-level atom und...
We investigate signals of trapping states in the micromaser system in terms of the average number of...
Using laser-cooled atoms strongly coupled to a high finesse optical cavity, we have performed real-t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographi...
We report the observation of multiple laser thresholds in the many-atom cavity QED microlaser. Trave...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...
We describe a one-atom microlaser involving Poissonian input of atoms with a fixed flight time throu...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Phase diagrams of the micromaser system are mapped out in terms of the physical parameters at hand l...
Recent experimental advances in the field of cavity quantum electrodynamics (QED) have opened new po...
Journals published by the American Physical Society can be found at http://publish.aps.org/We study ...
Conventional lasers (from table-top systems to microscopic devices) typically operate in the so-call...
Conventional lasers (from table-top systems to microscopic devices) typically operate in the so-call...
We examine the competition among one- and two-photon processes in an ultra-cold, three-level atom un...
We examine the competition among one- and two-photon processes in an ultracold, three-level atom und...
We investigate signals of trapping states in the micromaser system in terms of the average number of...
Using laser-cooled atoms strongly coupled to a high finesse optical cavity, we have performed real-t...