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Determination of conduction band edge characteristics of strained Si/Si1-xGex 被引量:15
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作者 宋建军 张鹤鸣 +2 位作者 胡辉勇 戴显英 宣荣喜 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第12期3827-3831,共5页
The feature of conduction band (CB) of Tensile-Strained Si(TS-Si) on a relaxed Si1-xGex substrate is systematically investigated, including the number of equivalent CB edge energy extrema, CB energy minima, the po... The feature of conduction band (CB) of Tensile-Strained Si(TS-Si) on a relaxed Si1-xGex substrate is systematically investigated, including the number of equivalent CB edge energy extrema, CB energy minima, the position of the extremal point, and effective mass. Based on an analysis of symmetry under strain, the number of equivalent CB edge energy extrema is presented; Using the K.P method with the help of perturbation theory, dispersion relation near minima of CB bottom energy, derived from the linear deformation potential theory, is determined, from which the parameters, namely, the position of the extremal point, and the longitudinal and transverse masses (m1^* and mt^*)are obtained. 展开更多
关键词 strained Si/Si1-xGex conduction-band K.P method
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Quantitative Mobility Spectrum Analysis for Determination of Electron and Magneto Transport Properties of Te-Doped GaSb 被引量:1
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作者 S. Acar M. Kasap +3 位作者 B. Y. Isik S. Oezcelik N. Tugluoglu S. Karadeniz 《Chinese Physics Letters》 SCIE CAS CSCD 2005年第9期2363-2366,共4页
Resistivity, magnetoresistivity and Hall effect measurements in n-type Te-doped GaSb grown by the liquid encapsuled Czochralski technique are carried out as functions of temperature (35-350 K) and magnetic field (0... Resistivity, magnetoresistivity and Hall effect measurements in n-type Te-doped GaSb grown by the liquid encapsuled Czochralski technique are carried out as functions of temperature (35-350 K) and magnetic field (0-1.35 T). The power law model is used to explain the temperature-dependent resistivity. The magnetic-field-dependent data are analysed using the quantitative mobility spectrum analysis technique. The effect of individual band parameters (nL, nr, μL, μr, p and μp) on both the electron and magneto transports have been discussed. The EL - Er energy separation between the L and conduction band edges is also derived. 展开更多
关键词 N-TYPE GASB GALLIUM ANTIMONIDE MAGNETOTRANSPORT CHARACTERIZATION conduction-band HALL MAGNETORESISTANCE DEPENDENCE
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