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- W187778690 abstract "The closed time path Green's function (CTPGF) theory and its path integral formulation are reviewed. The quantum interference between different paths and the statistics (generally nonequilibrium) make the closed time path necessary where the causality requirement is automatically ensured. It is proven to be equivalent to the Feynman-Vernon influence functional approach but it has the advantage of a systematic disentangling technique. For those fundamental problems of transport theory, by applying CTPGF, the time dependent Ginzburg–Landau equation for the macro-variables is a natural product of the micro-dynamics. The inconsistency between the force balance and the energy balance in the Thornber-Feynman transport problem is removed and the consistency is guaranteed by the nonequilibrium fluctuation-dissipation theorem. For transport in microstructures such as the tunneling transport across double barrier resonant tunneling structures, CTPGF method enables us to correctly treat all the essential ingredients of the problem: the reservoir effect, the nonperturbative tunneling coupling, and the nonequilibrium distribution of tunneling electrons. The frequency response in the negative differential resistance region and the noise characteristics are calculated and compared with experiments." @default.
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- W187778690 date "1991-01-01" @default.
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- W187778690 title "Closed Time Path Green's Function and Its Applications in Transport Theory" @default.
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- W187778690 doi "https://doi.org/10.1016/b978-0-444-88903-4.50015-9" @default.
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