Efimkin Dmitry K, Lozovik Yurii E, Sokolik Alexey A
Institute for Spectroscopy, Russian Academy of Sciences, Fizicheskaya 5, 142190, Troitsk, Moscow Region, Russia.
Nanoscale Res Lett. 2012 Feb 29;7(1):163. doi: 10.1186/1556-276X-7-163.
We study collective excitations in a helical electron liquid on a surface of three-dimensional topological insulator. Electron in helical liquid obeys Dirac-like equation for massless particles and direction of its spin is strictly determined by its momentum. Due to this spin-momentum locking, collective excitations in the system manifest themselves as coupled charge- and spin-density waves. We develop quantum field-theoretical description of spin-plasmons in helical liquid and study their properties and internal structure. Value of spin polarization arising in the system with excited spin-plasmons is calculated. We also consider the scattering of spin-plasmons on magnetic and nonmagnetic impurities and external potentials, and show that the scattering occurs mainly into two side lobes. Analogies with Dirac electron gas in graphene are discussed.PACS: 73.20.Mf; 73.22.Lp; 75.25.Dk.
我们研究三维拓扑绝缘体表面螺旋电子液体中的集体激发。螺旋液体中的电子服从无质量粒子的类狄拉克方程,其自旋方向严格由动量决定。由于这种自旋 - 动量锁定,系统中的集体激发表现为耦合的电荷和自旋密度波。我们发展了螺旋液体中自旋等离子体的量子场论描述,并研究了它们的性质和内部结构。计算了激发自旋等离子体的系统中产生的自旋极化值。我们还考虑了自旋等离子体在磁性和非磁性杂质以及外部势上的散射,并表明散射主要发生在两个旁瓣中。讨论了与石墨烯中狄拉克电子气的类比。物理评论分类号:73.20.Mf;73.22.Lp;75.25.Dk。