This paper investigates the effect of Dresselhaus spin orbit coupling on the spin-transport properties of ferromagnet/insulator/semiconductor/insulator/ferromagnet double-barrier structures. The influence of the thick...This paper investigates the effect of Dresselhaus spin orbit coupling on the spin-transport properties of ferromagnet/insulator/semiconductor/insulator/ferromagnet double-barrier structures. The influence of the thickness of the insulator between the ferromagnet and the semiconductor on the polarization is also considered. The obtained results indicate that (i) the polarization can be enhanced by reducing the insulator layers at zero temperature, and (ii) the tunnelling magnetoresistance inversion can be illustrated by the influence of the Dresselhaus spin-orbit coupling effect in the double-barrier structure. Due to the Dresselhaus spin-orbit coupling effect, the tunnelling magnetoresistance inversion occurs when the energy of a localized state in the barrier matches the Fermi energy EF of the ferromagnetic electrodes.展开更多
采用Slonczewski的近自由电子模型,利用转移矩阵的方法,研究了铁磁/绝缘层/有机半导体/铁磁隧道结的自旋极化载流子隧穿的温度和偏压特性.计算了T=4K和T=300K时,隧穿磁电阻(Tunneling Magnetic Resistance,TMR)随偏压的变化关系,同时还...采用Slonczewski的近自由电子模型,利用转移矩阵的方法,研究了铁磁/绝缘层/有机半导体/铁磁隧道结的自旋极化载流子隧穿的温度和偏压特性.计算了T=4K和T=300K时,隧穿磁电阻(Tunneling Magnetic Resistance,TMR)随偏压的变化关系,同时还研究了零温时在有限偏压下隧穿磁电阻TMR与绝缘层厚度、有机半导体层厚度以及铁磁/有机半导体界面势垒U的变化关系.我们的计算结果较好地解释了有关的实验结论.展开更多
基金supported by the National Natural Science Foundation of China (Grant No 10674040)the Specialized Research Fund for the Doctoral Program of Higher Education of China (Grant No 20060094002)
文摘This paper investigates the effect of Dresselhaus spin orbit coupling on the spin-transport properties of ferromagnet/insulator/semiconductor/insulator/ferromagnet double-barrier structures. The influence of the thickness of the insulator between the ferromagnet and the semiconductor on the polarization is also considered. The obtained results indicate that (i) the polarization can be enhanced by reducing the insulator layers at zero temperature, and (ii) the tunnelling magnetoresistance inversion can be illustrated by the influence of the Dresselhaus spin-orbit coupling effect in the double-barrier structure. Due to the Dresselhaus spin-orbit coupling effect, the tunnelling magnetoresistance inversion occurs when the energy of a localized state in the barrier matches the Fermi energy EF of the ferromagnetic electrodes.
文摘采用Slonczewski的近自由电子模型,利用转移矩阵的方法,研究了铁磁/绝缘层/有机半导体/铁磁隧道结的自旋极化载流子隧穿的温度和偏压特性.计算了T=4K和T=300K时,隧穿磁电阻(Tunneling Magnetic Resistance,TMR)随偏压的变化关系,同时还研究了零温时在有限偏压下隧穿磁电阻TMR与绝缘层厚度、有机半导体层厚度以及铁磁/有机半导体界面势垒U的变化关系.我们的计算结果较好地解释了有关的实验结论.