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- W2564053058 abstract "Abstract The Schrodinger-Langevin equation is approximately solved by propagating individual quantum trajectories for barrier transmission problems. Equations of motion are derived through use of the derivative propagation method, which leads to a hierarchy of coupled differential equations for the amplitude of the wave function and the spatial derivatives of the complex action along each trajectory. Computational results are presented for a one-dimensional Eckart barrier and a two-dimensional system involving either a thick or thin Eckart barrier along the reaction coordinate coupled to a harmonic oscillator. Frictional effects on the trajectory, the transmitted wave packet, and the transmission probability are analyzed." @default.
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- W2564053058 date "2017-02-01" @default.
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- W2564053058 title "Approximate quantum trajectory approach to the Schrödinger-Langevin equation for barrier transmission" @default.
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- W2564053058 doi "https://doi.org/10.1016/j.cplett.2016.12.024" @default.
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