Cavity losses for the dissipative Jaynes-Cummings Hamiltonian beyond Rotating Wave Approximation
arXiv:0709.1614 · doi:10.1088/1751-8113/40/48/015
Abstract
A microscopic derivation of the master equation for the Jaynes-Cummings model with cavity losses is given, taking into account the terms in the dissipator which vary with frequencies of the order of the vacuum Rabi frequency. Our approach allows to single out physical contexts wherein the usual phenomenological dissipator turns out to be fully justified and constitutes an extension of our previous analysis [Scala M. {\em et al.} 2007 Phys. Rev. A {\bf 75}, 013811], where a microscopic derivation was given in the framework of the Rotating Wave Approximation.
12 pages, 1 figure
References in corpus (1)
Cited by in corpus (39)
- Dissipation and Ultrastrong Coupling in Circuit QED
- Markovian master equations for quantum thermal machines: local vs global approach
- Quantum thermal absorption machines: refrigerators, engines and clocks
- Local vs global master equation with common and separate baths: superiority of the global approach in partial secular approximation
- Criticality-Enhanced Quantum Sensing via Continuous Measurement
- Non-additive dissipation in open quantum networks out of equilibrium
- Theoretical methods for ultrastrong light-matter interactions
- The Rotating-Wave Approximation: Consistency and Applicability from an Open Quantum System Analysis
- A Tutorial on Quantum Master Equations: Tips and tricks for quantum optics, quantum computing and beyond
- A quantum heat engine with coupled superconducting resonators
- Implications of gauge freedom for nonrelativistic quantum electrodynamics
- Non-Markovian Dynamics of Open Quantum Systems: Stochastic Equations and their Perturbative Solutions
- Two-resonator circuit QED: Dissipative Theory
- Refrigeration beyond weak internal coupling
- Nonequilibrium phases in hybrid arrays with flux qubits and NV centers
- Dissipation and entanglement dynamics for two interacting qubits coupled to independent reservoirs
- Environmental non-additivity and Franck-Condon physics in non-equilibrium quantum systems
- A recipe for Hamiltonian of system-environment coupling applicable to ultrastrong light-matter interaction regime
- Population trapping due to cavity losses
- Vibration-induced coherence enhancement of the performance of a biological quantum heat engine
- Thermodynamic fingerprints of non-Markovianity in a system of coupled superconducting qubits
- Non-Markovian Dynamics and Entanglement of Two-level Atoms in a Common Field
- Entanglement transfer in a noisy cavity network with parity-deformed radiation fields
- Entanglement Dynamics of Two Independent Cavity-Embedded Quantum Dots
- High-Fidelity Hot Gates for Generic Spin-Resonator Systems
- General Solution of the Quantum Damped Harmonic Oscillator
- Dissipation and detection of polaritons in ultrastrong coupling regime
- Shortcuts to Squeezed Thermal States
- An Approximate Solution of the Jaynes-Cummings Model with Dissipation
- Theory versus experiment for vacuum Rabi oscillations in lossy cavities
- Quantum interference induced by initial system-environment correlations
- Theory versus experiment for vacuum Rabi oscillations in lossy cavities (II): Direct test of uniqueness of vacuum
- Analytic approach to dynamics of the resonant and off-resonant Jaynes-Cummings systems with cavity losses
- Microscopic approach to field dissipation in the Jaynes-Cummings model
- Maxwell boundary conditions imply non-Lindblad master equation
- Quantum Fisher information and coherence of an atom in a dissipative cavity
- Implementation and topological characterization of Weyl exceptional rings in quantum-mechanical systems
- Quantum speed-up process of atom in dissipative cavity
- Quantum reservoir computing in Jaynes-Cummings models: Nonlinear memory and time-series prediction