| Literature DB >> 23749552 |
Helen Clara Peñate-Rodríguez1, Anais Dorta-Urra, Pedro Bargueño, German Rojas-Lorenzo, Salvador Miret-Artés.
Abstract
A canonical framework for chiral two-level systems coupled to a bath of harmonic oscillators is developed to extract, from a stochastic dynamics, the thermodynamic equilibrium values of both the population difference and coherences. The incoherent and coherent tunneling regimes are analyzed for an Ohmic environment in terms of a critical temperature defined by the maximum of the heat capacity. The corresponding numerical results issued from solving a non-linear coupled system of equations are fitted to approximate path-integral analytical expressions beyond the so-called non-interacting blip approximation in order to determine the different time scales governing both regimes.Keywords: optical activity; stochastic dynamics; two level systems
Year: 2013 PMID: 23749552 DOI: 10.1002/chir.22155
Source DB: PubMed Journal: Chirality ISSN: 0899-0042 Impact factor: 2.437