Effects of Dipole-Dipole Interaction on the Transmitted spectrum of Two-level Atoms trapped in an optical cavity
arXiv:1207.2828 · doi:10.1103/PhysRevA.89.043838
Abstract
The transmission spectrum of two dipole-dipole coupled atoms interacting with a single-mode optical cavity in strong coupling regime is investigated theoretically for the lower and higher excitation cases, respectively. The dressed states containing the dipole-dipole interaction (DDI) are obtained by transforming the two-atom system into an effective single-atom one. We found that the DDI can enhance the effects resulting from the positive atom-cavity detunings but weaken them for the negative detunings cases for lower excitation, which can promote the spectrum exhibiting two asymmetric peaks and shift the heights and the positions of them. For the higher excitation cases, DDI can augment the atomic saturation and lead to the deforming of the spectrum. Furthermore, the large DDI can make the atom and the cavity decouple, making a singlet of the normal-mode spectrum.
12pages, 7 figures
References in corpus (9)
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Dissipative preparation of entanglement in optical cavities
- Nonlinear spectroscopy of photons bound to one atom
- Normal-mode spectroscopy of a single bound atom-cavity system
- The effect of dipole-dipole interaction for two atoms with different couplings in non-Markovian environment
- Trapping and observing single atoms in the dark
- Deterministic creation of stationary entangled states by dissipation
- Tunable Entanglement, Antibunching and Saturation effects in Dipole Blockade
- Quantum phase transitions in coupled two-level atoms in a single-mode cavity
Cited by in corpus (7)
- Enhancement of coherent dipole coupling between two atoms via squeezing a cavity mode
- Strong coupling optical spectra in dipole-dipole interacting optomechanical Tavis-Cummings models
- Quantum battery based on dipole-dipole interaction and external driving field
- Light propagation in a random three-dimensional ensemble of point scatterers in a waveguide: size-dependent switching between diffuse radiation transfer and Anderson localization of light
- Coherent Perfect Absorption in Tavis-Cummings Models
- Photon routing in disordered chiral waveguide QED ladders: Interplay between photonic localization and collective atomic effects
- Photon statistics on the extreme entanglement