Quantum thermodynamics in chiral two--level systems. The quantum stochastic resonance
arXiv:1604.03712 · doi:10.3390/e18100354
Abstract
A Langevin canonical framework for a chiral two-level system coupled to a bath of harmonic oscillators is used within a coupling scheme different from the well-known spin-boson model. From this stochastic dynamics, within the Markovian regime and Ohmic friction, some standard quantum thermodynamics functions such as the energy average and heat capacity can be extracted. In particular, special emphasis is put on the so-called quantum stochastic resonance which is a cooperative effect of friction, noise and periodic driving occurring in a bistable system.
22 pages, 5 figures. arXiv admin note: text overlap with arXiv:1310.3155, arXiv:1207.3349
References in corpus (5)
- Using Molecules to Measure Nuclear Spin-Dependent Parity Violation
- Energy exchange in driven open quantum systems at strong coupling
- Specific heat anomalies of open quantum systems
- The Schrödinger-Langevin equation with and without thermal fluctuations
- Dissipative and stochastic geometric phase of a qubit within a canonical Langevin framework