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Spin-Dependent Electron Properties of a Triple-Terminal Quantum Dot Structure
Y. Han; W. J. Gong; G. Z. Wei
2009
发表期刊Communications in Theoretical Physics
ISSN0253-6102
卷号52期号:6页码:1117-1124
摘要Electron transport properties of a triple-terminal Aharonov-Bohm interferometer are theoretically studied. By applying a Rashba spin-orbit coupling to a quantum dot locally, we find that remarkable spin polarization comes about in the electron transport process with tuning the structure parameters, i.e., the magnetic flux or quantum dot levels. When the quantum dot levels are aligned with the Fermi level, there only appear spin polarization in this structure by the presence of an appropriate magnetic flux. However, in absence of magnetic flux spin polarization and spin separation can be simultaneously realized with the adjustment of quantum dot levels, namely, an incident electron from one terminal can select a specific terminal to depart from the quantum dots according to its spin state.
部门归属[han yu; gong wei-jiang; wei guo-zhu] northeastern univ, coll sci, shenyang 110004, peoples r china. [han yu] liaoning univ, dept phys, shenyang 110036, peoples r china. [gong wei-jiang; wei guo-zhu] acad sinica, int ctr mat phys, shenyang 110015, peoples r china.;gong, wj (reprint author), northeastern univ, coll sci, shenyang 110004, peoples r china;weijianggong@gmail.com
关键词Quantum Dot Electron Transport Rashba Interaction Transport Semiconductor Layers Wells
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WOS记录号WOS:000273052500026
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被引频次:2[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/31946
专题中国科学院金属研究所
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Y. Han,W. J. Gong,G. Z. Wei. Spin-Dependent Electron Properties of a Triple-Terminal Quantum Dot Structure[J]. Communications in Theoretical Physics,2009,52(6):1117-1124.
APA Y. Han,W. J. Gong,&G. Z. Wei.(2009).Spin-Dependent Electron Properties of a Triple-Terminal Quantum Dot Structure.Communications in Theoretical Physics,52(6),1117-1124.
MLA Y. Han,et al."Spin-Dependent Electron Properties of a Triple-Terminal Quantum Dot Structure".Communications in Theoretical Physics 52.6(2009):1117-1124.
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