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From coherently excited highly correlated states to incoherent relaxation processes in semiconductors
W Schäfer1, R Lövenich, N A Fromer
1John von Neumann-Institute for Computing (NIC), Forschungszentrum Jülich, 52425 Jülich, Germany.
Abstract:
Recent theories of highly excited semiconductors are based on two formalisms, referring to complementary experimental conditions, the real-time nonequilibrium Green's function techniques and the coherently controlled truncation of the many-particle problem. We present a novel many-particle theory containing both of these methods as limiting cases. As a first example of its application, we investigate four-particle correlations in a strong magnetic field including dephasing resulting from the growth of incoherent one-particle distribution functions. Our results are the first rigorous solution concerning formation and decay of four-particle correlations in semiconductors. They are in excellent agreement with experimental data.