2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/57757The tunneling hamiltonian has proven to be a useful method in many body physics to treat particle tunneling between different states represented as wavefunctions. Our problem is here applying what we did in the first paper to a driven sine-Gordon system. Here we apply a generalization of the tunneling Hamiltonian to charge density wave transport problems, in which tunneling between states which are wavefunctionals of a scalar quantum field are considered. We derive I-E curves which match Zenier curves used to fit data experimentally with wavefunctionals congruent with the false vacuum hypothesis22 pages, 6 figures, paper standardized with respect to APS editing guide lines, which include removal of unnecessary appendix entries already included in 1st paper of this seriesMathematical Physics46N50; 81T99The tunneling hamiltonian representation of false vaccuum decay: II. Application to soliton - anti soliton pair creationtext