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A multiphoton treatment of near resonant light scattering in intense fields
Authors:RJ Ballagh  J Cooper
Institution:Department of Physics, University of Otago, Dunedin, New Zealand;Joint Institute for Laboratory Astrophysics, National Bureau of Standards and University of Colorado, Boulder, CO 80309, U.S.A.
Abstract:The scattering by a two-state atom of monochromatic light of arbitrary intensity and detuning, is treated by solving Schrödinger's equation directly for the state of the scattered field. The calculation is performed in a basis of dressed atom states, which include to all orders the coupling of the incident field to the atom. Amplitudes describing sequences of scattering events are found by a nonperturbative method. A scattered intensity spectrum, directly related to the rate of change of energy in any given scattered field mode, is constructed in terms of bilinear products of the amplitudes representing all possible sequences of photon emission, and in the steady state limit the spectrum is found to be identical to the widely quoted results of Mollow. A discussion is devoted to understanding in physical terms the various quantities appearing in the expression for the intensity spectrum.
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