Acta Physica Sinica, Volume. 68, Issue 18, 187302-1(2019)
Fig. 1. (a) Schematic structure of of germanene spin filter. The blue regions on the left and right side are left and right lead. The area surrounded by red solid line is the central device. The regions shown in gray and yellow are exerted to the
Fig. 2. Relationship between the conductance
Fig. 3. (a) Energy-band diagram of germanene without external field; (b) energy-band diagram of germanene with local exchange field ; the solid (hollow) triangle represents the upper (lower) edge state, the dot represents the energy band, the red (blue) colour corresponds to the spin-up (spin-down) electron; (c) the spin-dependent conductance as a function of electronic energy when . (a)无外场时锗烯的电子能带结构; (b)交换场强度为 时的电子能带结构; 其中实心(空心)三角表示上(下)边缘态, 圆点表示体能带, 红色(蓝色)对应自旋向上(向下)的电子; (c)交换场强度为 时自旋相关电导随着电子能量的变化
Fig. 4. (a) The spin-dependent conductance as a function of electron Fermi energy when and ; (b) the spin-dependent conductance vs electron Fermi energy when ; (c) energy-band diagram of germanene with local exchange field and electric field . The solid (hollow) triangle represents the upper (lower) edge state, the dot represents the energy band, the red (blue) colour corresponds to the spin-up (spin-down) electron. (a)局域交换场和电场强度为 和 时自旋相关电导随着电子费米能量 的变化; (b)交换场和电场强度为 时自旋相关电导随着电子费米能量 的变化; (c)交换场和电场强度为 时的电子能带结构; 其中实心(空心)三角表示上(下)边缘态, 圆点表示体能带, 红色(蓝色)对应自旋向上(向下)的电子
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Yang Xiang, Jun Zheng, Chun-Lei Li, Yong Guo.
Received: May. 27, 2019
Accepted: --
Published Online: Jun. 28, 2020
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