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Non-Markovian dynamics of a dissipative two-level system: nonzero bias and sub-Ohmic bath
1Department of Physics, Shanghai Jiao Tong University, Shanghai 200240, People's Republic of China.
Abstract:
The quantum dynamics of the dissipative two-level system with nonzero bias and sub-Ohmic bath is studied by means of the perturbation approach based on a unitary transformation. It has been shown that for the sub-Ohmic bath it is necessary to use the non-Markovian approach, especially for the short time behavior of the coupled system and environment. The nonequilibrium correlation P(t) has been calculated to show that a finite bias may favor the short time coherence. The spectrum of the susceptibility chi"(omega) of the sub-Ohmic case may have a double peak structure in the range of omega>0 when the coupling alpha is relatively strong. Besides, the coherence-decoherence transition point alpha(c) is determined for different 0
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