Response of a two-level atom to a narrow-bandwidth squeezed-vacuum excitation


Autoria(s): Messikh, A.; Tanas, R.; Ficek, Z.
Data(s)

01/01/2000

Resumo

Using the coupled-system approach we calculate the optical spectra of the fluorescence and transmitted fields of a two-level atom driven by a squeezed vacuum of bandwidths smaller than the natural atomic linewidth. We find that in this regime of squeezing bandwidths the spectra exhibit unique features, such as a hole burning and a three-peak structure, which do not appear for a broadband excitation. We show that the features are unique to the quantum nature of the driving squeezed vacuum field and donor appear when the atom is driven by a classically squeezed field. We find that a quantum squeezed-vacuum field produces squeezing in the emitted fluorescence field which appears only in the squeezing spectrum while there is no squeezing in the total field. We also discuss a nonresonant excitation and find that depending on the squeezing bandwidth there is a peak or a hole in the spectrum at a frequency corresponding to a three-wave-mixing process. The hole appears only for a broadband excitation and results from the strong correlations between squeezed-vacuum photons.

Identificador

http://espace.library.uq.edu.au/view/UQ:36264/UQ36264.pdf

http://espace.library.uq.edu.au/view/UQ:36264

Idioma(s)

eng

Publicador

American Physical Soc.

Palavras-Chave #Optics #Physics, Atomic, Molecular & Chemical #Anomalous Resonance Fluorescence #2-level Atom #Phase Decays #Finite-bandwidth #Light #Systems #Inhibition #Spectrum #Driven #Absorption #C1 #780102 Physical sciences #240402 Quantum Optics and Lasers
Tipo

Journal Article