Microscopic Evolution of a Weakly Interacting Homogeneous Bose Gas
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We provide a detailed description of the nonequilibrium time evolution of an interacting homogeneous Bose-Einstein condensate. We use a nonperturbative in-medium quantum field theory approach as a microscopic model for the Bose gas. The real-time dynamics of the condensate is encoded in a set of self-consistent equations which corresponds to an infinite sum of ladder Feynman diagrams. The crucial role played by the interaction between fluctuations for the instability generation is thoroughly described.
[1] M. Bellac. Thermal Field Theory: Collective excitations in a plasma , 1996 .
[2] A. Griffin. Excitations in a Bose-condensed Liquid , 1993 .
[3] David E. Miller,et al. Quantum Statistical Mechanics , 2002 .
[4] M. Slemrod. DYNAMICS OF FIRST ORDER PHASE TRANSITIONS , 1984 .