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Master equation treatment of spontaneous emission
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absorption amplitude approximation atomic beam average Bloch Bloch vector calculate change signal coefficient coherence component consider contribution correlation corresponding coupling curve damping density matrix dependence dephasing described dipole discussion Doppler broadening dressed atom effect electric field emission processes emitted energy levels equations of motion evolution excitation factor fluctuations fluorescence light free induction decay frequency function given gives Hamiltonian induced initial integral intensity interaction inversion density Larmor precession laser beam laser field light beam Lorentzian master equation matrix element medium mode molecular molecules monochromatic Note nutation observed obtained operator optical oscillator perturbation phase photon Phys polarization population pulse radiative Raman Raman-type processes rate process resonance result ring laser rotating wave approximation saturation shift slowly varying solution spectral spectroscopy spectrum spontaneous emission standing wave steady stimulated emission sublevels subsect superradiance superradiant emission theory tion transient transition two-level system vector velocity width Zeeman