Paper
10 April 2007 Influence of dissipation on quantum wave dynamics in confined potential systems
Alexander A. Smirnovsky, Andrey L. Sanin
Author Affiliations +
Proceedings Volume 6597, Nanodesign, Technology, and Computer Simulations; 659704 (2007) https://doi.org/10.1117/12.726707
Event: Nanodesign, Technology, and Computer Simulations, 2006, Olsztyn, Poland
Abstract
Quantum dynamics of wave packet in one-dimensional system with distributed potential and dissipation is investigated in context of Schrodinger-Langevin-Kostin equation. Quadratic potential and double well potential bounded by external impenetrable walls are represented as examples. Numerical simulations are carried out for initial Gaussian packet at different values of dissipation parameters. For the quantum oscillator with dissipation the asymptotic dynamical limit in time is established. The mean values of coordinate and velocity tend to zero but uncertainty relation tends to minimal value 0.5 (in atomic units). Oscillations and resonances at external time-dependent action were studied. Dynamical properties of system with double well potential are investigated at different frequencies of external action. Fourier spectra of mean coordinate are characterized by sharply expressed singular components.
© (2007) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Alexander A. Smirnovsky and Andrey L. Sanin "Influence of dissipation on quantum wave dynamics in confined potential systems", Proc. SPIE 6597, Nanodesign, Technology, and Computer Simulations, 659704 (10 April 2007); https://doi.org/10.1117/12.726707
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KEYWORDS
Oscillators

Mechanics

Quantum physics

Distributed computing

Fourier transforms

Numerical simulations

Physics

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