corner
corner

Phys. Rev. E 67, 026707 (2003) [9 pages]

Simulation of wave packet tunneling of interacting identical particles

Download: PDF (96 kB) Buy this article Export: BibTeX or EndNote (RIS)

Yu. E. Lozovik1,*, A. V. Filinov1,2,†, and A. S. Arkhipov1,‡
1Institute of Spectroscopy RAS, 142190 Moscow Region, Troitsk, Russia
2Fachbereich Physik, Universität Rostock, Universitätsplatz 3, D-18051 Rostock, Germany

Received 20 August 2002; published 27 February 2003

We demonstrate a different method of simulation of nonstationary quantum processes, considering the tunneling of two interacting identical particles, represented by wave packets. The used method of quantum molecular dynamics (WMD) is based on the Wigner representation of quantum mechanics. In the context of this method ensembles of classical trajectories are used to solve quantum Wigner-Liouville equation. These classical trajectories obey Hamiltonian-like equations, where the effective potential consists of the usual classical term and the quantum term, which depends on the Wigner function and its derivatives. The quantum term is calculated using local distribution of trajectories in phase space, therefore, classical trajectories are not independent, contrary to classical molecular dynamics. The developed WMD method takes into account the influence of exchange and interaction between particles. The role of direct and exchange interactions in tunneling is analyzed. The tunneling times for interacting particles are calculated.

© 2003 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevE.67.026707
DOI:
10.1103/PhysRevE.67.026707
PACS:
02.70.Ns, 34.10.+x, 03.65.Xp, 71.15.Pd

*Electronic address: lozovik@isan.troitsk.ru

Electronic address: alex@ravel.mpg.uni-rostock.de

Electronic address: antoncom@id.ru