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Environment-assisted excitation energy transfer in LH1-RC-type and LH2-type trimers

Environment-assisted excitation energy transfer in LH1-RC-type and LH2-type trimers
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摘要 In this work,we study environment-assisted excitation energy transfer(EET) through calculating energy transfer efficiency(ETE) in LH1-RC-type and LH2-type trimers,which can be used to mimic energy transfer behaviors in the basic unit cells of LH1-RC and LH2 light-harvesting complexes.Quantum state evolution of the trimers is described by a non-Hermitian quantum master equation.ETE in these trimer systems is investigated by the use of numerical solutions at finite temperatures for the non-Hermitian master equation.We theoretically reveal the temperature-assisted ETE enhancement.It is found that highly efficient EET with nearly unit efficiency may occur in the nearby regime of the critical point of quantum phase transition. In this work, we study environment-assisted excitation energy transfer (EET) through calculating energy transfer efficiency (ETE) in LH1-RC-type and LH2-type trimers, which can be used to mimic energy transfer behaviors in the basic unit cells of LH1-RC and LH2 light-harvesting complexes. Quantum state evolution of the trimers is described by a non-Hermitian quantum master equation. ETE in these trimer systems is investigated by the use of numerical solutions at finite temperatures for the non-Hermitian master equation. We theoretically reveal the temperature-assisted ETE enhancement. It is found that highly efficient EET with nearly unit efficiency may occur in the nearby regime of the critical point of quantum phase transition.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第9期1541-1548,共8页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the National Fundamental Research Program (Grant No. 2007CB925204) the National Natural Science Foundation of China (Grant Nos. 11075050 and 10775048) the Program for Changjiang Scholars and Innovative Research Team in University (Grant No. IRT0964) the Hunan Provincial Natural Science Foundation (Grant No. 11JJ7001)
关键词 excitation energy transfer LH1-RC-type and LH2-type trimers quantum phase transition 能量转移 三聚体 LH2 RC型 2型 激发 环境 能量传递效率
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