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Rare Earth Doping of Topological Insulators: A Brief Review of Thin Film and Heterostructure Systems

机译:拓扑绝缘子的稀土掺杂:薄膜和异质结构系统的简要回顾

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Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivial electronic band structure coexists with longrange ferromagnetic order. The ferromagnetic ground state can break timereversal symmetry, opening a gap in the topological surface states whose size is dependent on the magnitude of the magnetic moment. Doping with rare earth ions is one way to introduce higher magnetic moments into a material, however, in Bi2Te3 bulk crystals, the solubility limit is only a few percent. Using molecular beam epitaxy for the growth of doped (Sb,Bi)2(Se,Te)3 TI thin films, high doping concentrations can be achieved while preserving their high crystalline quality. The growth, structural, electronic, and magnetic properties of Dy, Ho, and Gd doped TI thin films will be reviewed. Indeed, high magnetic moments can be introduced into the TIs, which are, however, not ferromagnetically ordered. By making use of interfacial effects, magnetic longrange order in Dy doped Bi2Te3, proximitycoupled to the MTI Cr:Sb2Te3, has been achieved. Clearly, engineered MTI heterostructures offer new possibilities that combine the advantageous properties of different layers, and thus provide an ideal materials platform enabling the observation new quantum effects at higher temperatures.
机译:磁性拓扑绝缘体(MTI)是一种新颖的材料类别,其中拓扑非平凡的电子能带结构与远程铁磁有序共存。铁磁基态会破坏定时器的对称性,从而在拓扑表面状态中打开一个间隙,该间隙的大小取决于磁矩的大小。掺杂稀土离子是将较高的磁矩引入材料的一种方法,但是,在Bi2Te3块状晶体中,溶解度极限仅为百分之几。使用分子束外延生长掺杂的(Sb,Bi)2(Se,Te)3 TI薄膜,可以实现高掺杂浓度,同时保持其高结晶质量。将对掺Dy,Ho和Gd的TI薄膜的生长,结构,电子和磁性进行回顾。确实,可以将高磁矩引入TI,但这些矩不是铁磁有序的。通过利用界面效应,已实现了与MTI Cr:Sb2Te3邻近耦合的Dy掺杂Bi2Te3中的磁性长程有序。显然,工程化的MTI异质结构提供了结合不同层的有利特性的新可能性,从而提供了一种理想的材料平台,从而能够在更高的温度下观察新的量子效应。

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