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Theories of quantum dissipation and nonlinear coupling bath descriptors
33
Citations
38
References
2018
Year
Quantum DynamicQuantum ScienceEngineeringQuantum ComputingPhysicsMany-body Quantum PhysicNatural SciencesHarmonic BathQuantum Field TheoryApplied PhysicsQuantum Mechanical PropertyQuantum TheoryBath Coupling DescriptorsQuantum ChaosQuantum EntanglementQuantum Dissipation
The quest of an exact and nonperturbative treatment of quantum dissipation in nonlinear coupling environments remains in general an intractable task. In this work, we address the key issues toward the solutions to the lowest nonlinear environment, a harmonic bath coupled both linearly and quadratically with an arbitrary system. To determine the bath coupling descriptors, we propose a physical mapping scheme, together with the prescription reference invariance requirement. We then adopt a recently developed dissipaton equation of motion theory [R. X. Xu et al., Chin. J. Chem. Phys. 30, 395 (2017)], with the underlying statistical quasi-particle ("dissipaton") algebra being extended to the quadratic bath coupling. We report the numerical results on a two-level system dynamics and absorption and emission line shapes.
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