Properties of displaced number states
- 1 March 1990
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 41 (5) , 2645-2652
- https://doi.org/10.1103/physreva.41.2645
Abstract
Recent developments in quantum optics have led to new proposals to generate number states of the electromagnetic field using conditioned measurement techniques or the properties of atom-field interactions in microwave cavities in the micromaser. The number-state field prepared in such a way may be transformed by the action of a displacement operator; for the microwave micromaser state this could be implemented by the action of a classical current that drives the cavity field. We evaluate some properties of such displaced number states, especially their description in phase space. The photon number distribution is shown to display unusual oscillations, which are interpreted as interference in phase space, analogous to Franck-Condon oscillations in molecular spectra. The possibility of detecting these oscillations is discussed, through the photodetection counting statistics of the displaced number states. We show that the displaced-number-state quantum features are relatively robust when dissipation of the field energy is included.Keywords
This publication has 27 references indexed in Scilit:
- Production of number states of the electomagnetic fieldPhysical Review A, 1989
- Realization of a two-photon maser oscillatorPhysical Review Letters, 1987
- Connection between microscopic and macroscopic maser theoryPhysical Review A, 1987
- Quantum and semiclassical steady states of a kicked cavity modeJournal of the Optical Society of America B, 1986
- Experimental realization of a localized one-photon statePhysical Review Letters, 1986
- One-Atom MaserPhysical Review Letters, 1985
- Non-classical effects in the statistical properties of lightReports on Progress in Physics, 1980
- Ordered Expansions in Boson Amplitude OperatorsPhysical Review B, 1969
- Coherent and Incoherent States of the Radiation FieldPhysical Review B, 1963
- Equivalence of Semiclassical and Quantum Mechanical Descriptions of Statistical Light BeamsPhysical Review Letters, 1963