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Quantum Spin Transport in Rashba Spin-Orbit-Coupled Graphene Nanoflakes

Quantum Spin Transport in Rashba Spin-Orbit-Coupled Graphene Nanoflakes
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摘要 We study the spin-resolved transport in a two-terminal graphene nanoflake device with a Rashba spinorbit coupling region in the center of the device. The Green's function method is applied to the system and the spin transmission probability and the spin polarization in x, y, and z directions are calculated. It is found that the components of the spin polarization are antisymmetric functions of Fermi energy, which oscillate and decay to the zero with increasing the energy for all values of the Rashba strength. It is shown that by tuning the Rashba strength via a gate voltage and/or changing the size of the system, it is possible to control the sign and magnitude of the spin polarization. The system represented here is a typical candidate for full electrical spintronic devices based on the carbon materials that are used for spin filtration.
机构地区 Department of Physics
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第3期341-346,共6页 理论物理通讯(英文版)
基金 University of Kashan for supporting this work by Grant No.463821/03
关键词 spin transport graphene nanoflake rashba spin-orbit coupling 自旋轨道耦合 自旋输运 纳米 石墨 自旋电子器件 自旋-轨道耦合 量子 自旋极化
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