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Temperature Effects of Electric Field on the First Excited State of Strong Coupling Polaron in a CsI Quantum Pseudodot 被引量:1

Temperature Effects of Electric Field on the First Excited State of Strong Coupling Polaron in a CsI Quantum Pseudodot
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摘要 Employing variational method of Pekar type(VMPT), this paper investigates the first-excited state energy(FESE), excitation energy and transition frequency of the strongly-coupled polaron in the Cs I quantum pseudodot(QPD)with electric field. The temperature effects on the strong-coupling polaron in electric field are calculated by using the quantum statistical theory(QST). The results from the present investigation show that the FESE, excitation energy and transition frequency increase(decrease) firstly and then at lower(higher) temperature regions. They are decreasing functions of the electric field strength.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第3期337-340,共4页 理论物理通讯(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No.11464033
关键词 temperature effects electric field POLARON CsI quantum pseudodot 强耦合极化子 量子统计理论 电场强度 温度效应 CSI 第一激发态 跃迁频率 激发能量
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