论文标题

抗铁磁螺旋作为有效的自旋偏光剂:电场和高度有序跳跃之间的相互作用

Antiferromagnetic helix as an efficient spin polarizer: Interplay between electric field and higher ordered hopping

论文作者

Gupta, Debjani Das, Maiti, Santanu K.

论文摘要

我们报告了抗铁磁螺旋系统的旋转过滤操作,具有零净磁化。共同的智慧表明,对于这样的系统,不再极化电子的束旋转电流不再可用。但是,一旦我们应用了垂直于螺旋轴的电场,就会发生向上和向下的自旋能通道之间的大分离,从而产生高度的自旋极化。到目前为止,尚未据报道这样的处方。我们采用紧密结合框架来说明抗铁磁螺旋,我们通过使用Landauer-Büttiker形式上确定自旋选择性电流来计算自旋过滤效率。几何构象在自旋通道分离中起着重要作用,在这里,我们在这里批判性地研究了在存在电场的情况下电子的短距离和远距离跳跃的影响。我们发现,随着电子跳跃范围的增加,过滤性能得到改善。此外,可以通过改变电场的强度和方向以及调节描述抗铁磁螺旋的物理参数来选择性地改变自旋极化的相位。最后,我们探讨了Dephasing的具体作用,以使系统更现实,并使当前的交流成为独立的沟通。我们的分析可能提供了一种新的依赖构象的自旋极化的途径,具有更长的电子范围,并且可以进一步推广到其他类型的其他迷人的抗磁性系统。

We report spin filtration operation considering an antiferromagnetic helix system, possessing zero net magnetization. Common wisdom suggests that for such a system, a spin-polarized current is no longer available from a beam of unpolarized electrons. But, once we apply an electric field perpendicular to the helix axis, a large separation between up and down spin energy channels takes place which yields a high degree of spin polarization. Such a prescription has not been reported so far to the best of our concern. Employing a tight-binding framework to illustrate the antiferromagnetic helix, we compute spin filtration efficiency by determining spin selective currents using Landauer-Büttiker formalism. Geometrical conformation plays an important role in spin channel separation, and here we critically investigate the effects of short-range and long-range hoppings of electrons in presence of the electric field. We find that the filtration performance gets improved with increasing the range of hopping of electrons. Moreover, the phase of spin polarization can be altered selectively by changing the strength and direction of the electric field, and also by regulating the physical parameters that describe the antiferromagnetic helix. Finally, we explore the specific role of dephasing, to make the system more realistic and to make the present communication a self-contained one. Our analysis may provide a new route of getting conformation-dependent spin polarization possessing longer range hopping of electrons, and can be generalized further to different kinds of other fascinating antiferromagnetic systems.

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