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硅烯和其他类似二维晶体的磁光响应中的谷自旋极化。

Valley-spin polarization in the magneto-optical response of silicene and other similar 2D crystals.

机构信息

Department of Physics, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

Phys Rev Lett. 2013 May 10;110(19):197402. doi: 10.1103/PhysRevLett.110.197402. Epub 2013 May 7.

Abstract

We calculate the magneto-optical conductivity and electronic density of states for silicene, the silicon equivalent of graphene, and similar crystals such as germanene. In the presence of a perpendicular magnetic field and electric field gating, we note that four spin- and valley-polarized levels can be seen in the density of states, and transitions between these levels lead to similarly polarized absorption lines in the longitudinal, transverse Hall, and circularly polarized dynamic conductivity. While previous spin and valley polarization predicted for the conductivity is only present in the response to circularly polarized light, we show that distinct spin and valley polarization can also be seen in the longitudinal magneto-optical conductivity at experimentally attainable energies. The frequency of the absorption lines may be tuned by the electric and magnetic field to onset in a range varying from THz to the infrared. This potential to isolate charge carriers of definite spin and valley label may make silicene a promising candidate for spin- and valleytronic devices.

摘要

我们计算了硅烯(石墨烯的硅等效物)和类似晶体(如锗烯)的磁光导率和电子态密度。在存在垂直磁场和电场门控的情况下,我们注意到在态密度中可以看到四个自旋和谷极化能级,并且这些能级之间的跃迁导致纵向、横向 Hall 和圆偏振动态电导率中类似极化的吸收线。虽然先前预测的对于电导率的自旋和谷极化仅存在于对圆偏振光的响应中,但我们表明,在实验上可达到的能量范围内,也可以在纵向磁光导率中看到明显的自旋和谷极化。吸收线的频率可以通过电场和磁场来调节,使其在从太赫兹到红外的范围内开始出现。这种能够隔离具有确定自旋和谷标记的载流子的可能性,使得硅烯成为自旋和谷电子器件的有前途的候选者。

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