Nonequilibrium thermal transport and photon squeezing in a quadratic qubit-resonator system
arXiv:2107.07667 · doi:10.1103/PhysRevA.104.033701
Abstract
We investigate steady-state thermal transport and photon statistics in a nonequilibrium hybrid quantum system, in which a qubit is longitudinally and quadratically coupled to an optical resonator. Our calculations are conducted with the method of the quantum dressed master equation combined with full counting statistics. The effect of negative differential thermal conductance is unravelled at finite temperature bias, which stems from the suppression of cyclic heat transitions and large mismatch of two squeezed photon modes at weak and strong qubit-resonator hybridizations, respectively. The giant thermal rectification is also exhibited at large temperature bias. It is found that the intrinsically asymmetric structure of the hybrid system and negative differential thermal conductance show the cooperative contribution. Noise power and skewness, as typical current fluctuations, exhibit global maximum with strong hybridization at small and large temperature bias limits, respectively. Moreover, the effect of photon quadrature squeezing is discovered in the strong hybridization and low-temperature regime, which shows asymmetric response to two bath temperatures. These results would provide some insight to thermal functional design and photon manipulation in qubit-resonator hybrid quantum systems.
11pages, 5figs
References in corpus (16)
- Quantum technologies with hybrid systems
- Steady-state Mechanical Squeezing in an Optomechanical System via Duffing Nonlinearity
- Rectification of electronic heat current by a hybrid thermal diode
- Berry-Phase induced Heat Pumping and its Impact on the Fluctuation Theorem
- Performance of a quantum heat engine at strong reservoir coupling
- Thermodynamics of Quantum Information Flows
- Characterization of a Two-Photon Quantum Battery: Initial Conditions, Stability and Work Extraction
- Dynamic control of quantum geometric heat flux in a nonequilibrium spin-boson model
- Observing pure effects of counter-rotating terms without ultrastrong coupling: A single photon can simultaneously excite two qubits
- Multi-output microwave single-photon source using superconducting circuits with longitudinal and transverse couplings
- Geometric Heat Pump: Controlling Thermal Transport with Time-dependent Modulations
- Photon-Number Squeezing in Circuit Quantum Electrodynamics
- Nonlinear two-photon Rabi-Hubbard model: superradiance and photon/photon-pair Bose-Einstein condensate
- Sharp negative differential resistance from vibrational mode softening in molecular junctions
- Heat transport through a two-level system embedded between two harmonic resonators
- Permanent Directional Heat Currents in Lattices of Optomechanical Resonators