论文标题

在Mn掺杂的琐碎CDTE和拓扑HGTE半导体中,动量分辨自旋分裂

Momentum-resolved spin splitting in Mn-doped trivial CdTe and topological HgTe semiconductors

论文作者

Autieri, Carmine, Śliwa, Cezary, Islam, Rajibul, Cuono, Giuseppe, Dietl, Tomasz

论文摘要

局部旋转与带或拓扑状态之间的交换耦合是巨大的磁通频率和磁通效应的效果,并确定磁绝缘体和半导体中的自旋旋转相互作用。但是,即使在典型稀释的磁性半导体中,例如CD $ _ {1-X} $ MN $ _X $ TE和HG $ _ {1-X} $ MN $ _X $ _X $ TE也不理解这种与Wave Vector的耦合的演变。一系列实验表明,交换引起的CD $ _ {1-x} $ Mn $ _x $ te和Zn $ _ {1-x} $ _ {1-x} $ Mn $ _x $ te在Brillouin区域的L点处与现有的范围相比,在Brillouin区域的范围更大的范围和一个值得一提的是,它比一个阶段的范围更大,并且是一个值得一提的是,它的数量较小。这些发现的起源是通过合并来定量阐明的:(i)相对论的第一原理密度功能计算; (ii)一种紧密的结合方法,该方法仔细考虑了潜在和动力学SP-D交换相互作用的K依赖性; (iii)$ e_1 $和$ e_1 $ + $Δ_1$光学转换的磁性圆二色性理论(MCD),在信封功能$ kp $ sholumismiss中为Zinc-Blende Crystals Brillouin区域的L点中开发。 This combination of methods leads to the conclusion that the physics of MCD at the boundary of the Brillouin zone is strongly affected by the strength of two relativistic effects in particular compounds: (i) the mass-velocity term that controls the distance of the conduction band at the L point to the upper Hubbard band of Mn ions and, thus, a relative magnitude and sign of the exchange splittings in the conduction and valence bands; (ii)自旋摩托明锁定通过自旋轨道耦合,从而根据特定的L阀相对于磁化方向的方向减少交换分裂。

Exchange coupling between localized spins and band or topological states accounts for giant magnetotransport and magnetooptical effects as well as determines spin-spin interactions in magnetic insulators and semiconductors. However, even in archetypical dilute magnetic semiconductors such as Cd$_{1-x}$Mn$_x$Te and Hg$_{1-x}$Mn$_x$Te the evolution of this coupling with the wave vector is not understood. A series of experiments have demonstrated that exchange-induced splitting of magnetooptical spectra of Cd$_{1-x}$Mn$_x$Te and Zn$_{1-x}$Mn$_x$Te at the L points of the Brillouin zone is, in contradiction to the existing theories, more than one order of magnitude smaller compared to its value at the zone center and can show an unexpected sign of the effective Landé factors. The origin of these findings we elucidate quantitatively by combining: (i) relativistic first-principles density functional calculations; (ii) a tight-binding approach that takes carefully into account k-dependence of the potential and kinetic sp-d exchange interactions; (iii) a theory of magnetic circular dichroism (MCD) for $E_1$ and $E_1$ + $Δ_1$ optical transitions, developed here within the envelope function $kp$ formalism for the L point of the Brillouin zone in zinc-blende crystals. This combination of methods leads to the conclusion that the physics of MCD at the boundary of the Brillouin zone is strongly affected by the strength of two relativistic effects in particular compounds: (i) the mass-velocity term that controls the distance of the conduction band at the L point to the upper Hubbard band of Mn ions and, thus, a relative magnitude and sign of the exchange splittings in the conduction and valence bands; (ii) the spin-momentum locking by spin-orbit coupling that reduces exchange splitting depending on the orientation of particular L valleys with respect to the magnetization direction.

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