Quantum tunneling in the presence of an arbitrary linear dissipation mechanism
- 1 August 1984
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 30 (3) , 1208-1218
- https://doi.org/10.1103/physrevb.30.1208
Abstract
This paper considers the tunneling out of a metastable state at of a system whose classical equation of motion is, in Fourier-transformed form, where is a conservative potential and represents the effects of arbitrary linear dissipative and/or reactive elements. It is shown that, provided a few commonly satisfied conditions obtain, there is a simple prescription for writing down the imaginary-time effective action functional which determines the tunneling rate in the Wentzel-Kramers-Brillouin limit; namely, it contains the usual term in , plus a term of the form , where is the Fourier transform of the imaginary-time trajectory. Previously obtained results are special cases of this prescription. Applications are made to the case of "anomalous" dissipation (rate of dissipation proportional to the squared velocity of the momentum conjugate to the tunneling variable), to the "mixed" case (relaxation by collisions subject to a conservation law), and to more realistic models of a rf superconducting quantum-interference device.
Keywords
This publication has 14 references indexed in Scilit:
- Quantum tunnelling in a dissipative systemPublished by Elsevier ,2004
- Quantum electrodynamic tunneling in a model ferroelectric capacitor with linear passive dissipationPhysical Review B, 1984
- Variational theorem for the WKBJ barrier factor for tunneling in systems with many degrees of freedomPhysics Letters A, 1983
- Quantum Dynamics of Tunneling between SuperconductorsPhysical Review Letters, 1982
- Influence of dissipation on phase tunneling in Josephson-junctionsZeitschrift für Physik B Condensed Matter, 1982
- Widom and Clark Respond:Physical Review Letters, 1982
- Comment on "Probabilities for Quantum Tunneling through a Barrier with Linear Passive Dissipation"Physical Review Letters, 1982
- Probabilities for Quantum Tunneling through a Barrier with Linear Passive DissipationPhysical Review Letters, 1982
- Pointer basis of quantum apparatus: Into what mixture does the wave packet collapse?Physical Review D, 1981
- Orientational dynamics of superfluid 3He: A “two-fluid” model. I. Spin dynamics with relaxationAnnals of Physics, 1977