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Dissipation Dynamics Of A Weakly Driven Jaynes-Cummings System

Posted on:2018-07-03Degree:MasterType:Thesis
Country:ChinaCandidate:S M YuFull Text:PDF
GTID:2310330563452494Subject:Physics
Abstract/Summary:PDF Full Text Request
We generalize a microscopic master equation method to study the dissipation dynamics of Jaynes-Cummings two-level system with a weak external driving.Using perturbative analysis to extend the damping bases theory,we derive the corrected Rabi oscillation and vacuum Rabi splitting analytically.The evolution of the decoherence factor of the weakly driven system reveals that the off-diagonal density matrix elements are oscillating at a frequency dependent on the driving strength and the initial population inversion.For highly-inverted systems at the weak-driving limit,this frequency reduces to twice the value for the non-driven system,showing the dissipation dynamics unable to be discovered using more conventional approaches.
Keywords/Search Tags:Open quantum system, Jaynes-Cummings model, Microscopic master equation, Quantum decoherence
PDF Full Text Request
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