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Local density of states of dc-biased superlattices with time-dependent imperfection

Local density of states of dc-biased superlattices with time-dependent imperfection
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摘要 The single-particle Green's function for a dc-biased superlattices with single impurity potential varying harmonically with time has been obtained in the framework of U(t,t') method and Floquet-Green's function. The calculation of the local density of states shows that new states will emerge between the resonant Wannier-Stark states as a result of the intervention of time-dependent impurity potential, and the increase in electric field strength of impurity will result in the growing of the number of new states between the gaps of neighbouring Stark ladders. The single-particle Green's function for a dc-biased superlattices with single impurity potential varying harmonically with time has been obtained in the framework of U(t,t') method and Floquet-Green's function. The calculation of the local density of states shows that new states will emerge between the resonant Wannier-Stark states as a result of the intervention of time-dependent impurity potential, and the increase in electric field strength of impurity will result in the growing of the number of new states between the gaps of neighbouring Stark ladders.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第4期822-827,共6页 中国物理B(英文版)
基金 Project supported by the Natural Science Foundation of Shanxi Province (Grant No 20031006).
关键词 local density of states Floquet-Green's function defects and impurity local density of states, Floquet-Green's function defects and impurity
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