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Explicit solution of diffusion master equation under the action of linear resonance force via the thermal entangled state representation

Using the well-behaved features of the thermal entangled state representation, we solve the diffusion master equation under the action of a linear resonance force, and then obtain the infinitive operator-sum representation of the density operator. This approach may also be effective for treating oth...

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Published in:Chinese physics B 2015-07, Vol.24 (7), p.70304-1-070304-4
Main Authors: Yao, Fei, Wang, Ji-Suo, Xu, Tian-Niu
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description Using the well-behaved features of the thermal entangled state representation, we solve the diffusion master equation under the action of a linear resonance force, and then obtain the infinitive operator-sum representation of the density operator. This approach may also be effective for treating other master equations. Moreover, we find that the initial pure coherent state evolves into a mixed thermal state after passing through the diffusion process under the action of the linear resonance force.
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source Institute of Physics:Jisc Collections:IOP Publishing Read and Publish 2024-2025 (Reading List)
subjects Coherence
Density
Diffusion
Entangled states
Mathematical analysis
Operators
Representations
title Explicit solution of diffusion master equation under the action of linear resonance force via the thermal entangled state representation
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