铁磁性
凝聚态物理
单层
霍尔效应
量子反常霍尔效应
量子霍尔效应
材料科学
物理
电阻率和电导率
磁场
纳米技术
量子力学
作者
Emmanuel V. C. Lopes,T. M. Schmidt
摘要
In this work, we have investigated the emergence of quantum anomalous Hall (QAH) effect in 1T-CrX2 (X = Bi, Sb) monolayers. Using a combination of first-principles and tight-binding methods, we demonstrate that the topological phase is a result of biaxial tensile strain, many-electron effects, and spin–orbit coupling. Both two-dimensional structures are ferromagnetic under strain and the phase transition from trivial to QAH is identified by nonvanishing Berry curvature with a Chern number C=2. The many-electron effects, expressed here by an effective Coulomb U parameter, play an important role in the magnetic anisotropy energy, affecting the QAH phase. Our results show that the 1T-CrX2 monolayers support large deformations, up to 25% of biaxial tensile strain, keeping their electronic, magnetic, and topological properties. This large elasticity combined with the bulk-boundary topological states, makes these 2D magnetic structures feasible to adhere on distinct surfaces being potential for spintronic applications.
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