Dynamic Resonance Fluorescence in a Colored Vacuum

단일 모드 공진기에서의 동역학 공명형광

  • Hyoncheol Nha (Center for Macroscopic Quantum-field Laser, KAIST) ;
  • Chough, Young-Tak (Center for Macroscopic Quantum-field Laser, KAIS) ;
  • Wonho Jhe (Department of Physics, Seoul National University) ;
  • Kyoungwon An (Center for Macroscopic Quantum-field Laser, KAIST)
  • Published : 2000.02.01

Abstract

Resonance fluorescence is the manifestation of the interaction between the physical system under consideration and the vacuum-field fluctuation. The fluorescence spectrum provides such physical informations as the energy-level structure of the system, instabilities and relative populations of the energy levels, etc.. One of the typical fluorescence spectra is the Mollow triplet appearing when two-level atoms are driven by a strong coherent field in free space$^{(1)}$ . In the weak field limit, the singlet instead of the triplet is obtained with a reduced linewidth due to the squeezing of one quadrature phase of the induced atomic dipole$^{(2)}$ . On the other hand, when the atoms are put inside a cavity rather than in free space, a doublet spectrum due to the vacuum Rabi-splitting is achieved, showing clearly the coupling of atoms and the cavity in the single-quantum limit$^{(3)}$ . (omitted)

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