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
The temperature dependence of exchange bias and coercivity in a ferromagnetic layer coupled with an antiferromagnetic layer is discussed.In this model,the temperature dependence comes from the thermal instability of t...The temperature dependence of exchange bias and coercivity in a ferromagnetic layer coupled with an antiferromagnetic layer is discussed.In this model,the temperature dependence comes from the thermal instability of the system states and the temperature modulated relative magnetic parameters.Morever,the thermal fluctuation of orientations of easy axes of antiferromagnetic grains at preparing has been considered.From the present model,the experimental results can be illustrated qualitatively for available magnetic parameters.Based on our discussion,we can conclude that soft ferromagnetic layer coupled by hard antiferromagnetic layer may be very applicable to design magnetic devices.In special exchange coupling,we can get high exchange bias and low coercivity almost independent of temperature for proper temperature ranges.展开更多
Pseudo-spin-valve (PSV) sandwiches using amorphous CoNbZr alloy as soft magnetic layer were fabricated by magnetron sputtering. The giant magnetoresistance (GMR) and its dependence on the thickness of magnetic layer w...Pseudo-spin-valve (PSV) sandwiches using amorphous CoNbZr alloy as soft magnetic layer were fabricated by magnetron sputtering. The giant magnetoresistance (GMR) and its dependence on the thickness of magnetic layer were investigated. Anti-parallel magnetization alignments were observed in the samples with very thin CoNbZr thickness (2-4 nm) and a maximum GMR ratio of 6.5% was obtained. The Camley-Barnas semiclassical model was extended for amorphous layer based magnetic sandwiches by considering that the mixed layers exist between the ferromagnetic and nonmagnetic layer. The calculated results agree with the experimental results very well, indicating that the new model gives a more realistic picture of the physical processes that take place in the magnetic sandwiches. Moreover, the calculated results for amorphous sandwiches also clarify that the occurrence of maximum GMR at very small thickness of amorphous layer is ascribed to the short mean-free-path in amorphous materials.展开更多
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.
文摘The temperature dependence of exchange bias and coercivity in a ferromagnetic layer coupled with an antiferromagnetic layer is discussed.In this model,the temperature dependence comes from the thermal instability of the system states and the temperature modulated relative magnetic parameters.Morever,the thermal fluctuation of orientations of easy axes of antiferromagnetic grains at preparing has been considered.From the present model,the experimental results can be illustrated qualitatively for available magnetic parameters.Based on our discussion,we can conclude that soft ferromagnetic layer coupled by hard antiferromagnetic layer may be very applicable to design magnetic devices.In special exchange coupling,we can get high exchange bias and low coercivity almost independent of temperature for proper temperature ranges.
基金Project (90306015) supported by NSFC Project supported by Youth Foundation of Science and Technology of UESTC
文摘Pseudo-spin-valve (PSV) sandwiches using amorphous CoNbZr alloy as soft magnetic layer were fabricated by magnetron sputtering. The giant magnetoresistance (GMR) and its dependence on the thickness of magnetic layer were investigated. Anti-parallel magnetization alignments were observed in the samples with very thin CoNbZr thickness (2-4 nm) and a maximum GMR ratio of 6.5% was obtained. The Camley-Barnas semiclassical model was extended for amorphous layer based magnetic sandwiches by considering that the mixed layers exist between the ferromagnetic and nonmagnetic layer. The calculated results agree with the experimental results very well, indicating that the new model gives a more realistic picture of the physical processes that take place in the magnetic sandwiches. Moreover, the calculated results for amorphous sandwiches also clarify that the occurrence of maximum GMR at very small thickness of amorphous layer is ascribed to the short mean-free-path in amorphous materials.