Department of Physics, Kohat University of Science and Technology, Kohat 26000, Khyber Pakhtunkhwa, Pakistan.
J Phys Condens Matter. 2023 Feb 24;35(16). doi: 10.1088/1361-648X/acbc02.
Nonlinear Hall effect (NLHE), a new member of the family of Hall effects, in monolayer phosphorene is investigated. We find that phosphorene exhibits pronounced NLHE, arising from the dipole moment of the Berry curvature induced by the proximity effect that breaks the inversion symmetry of the system. Remarkably, the nonlinear Hall response exhibits central minimum with a width on the order of the band gap, followed by two resonance-like peaks. Interestingly, each resonance peak of the Hall response shifts in the negative region of the chemical potential which is consistent with the shift of valence and conduction bands in the energy spectrum of monolayer phosphorene. It is observed that the two peaks are asymmetric, originated from anisotropy in the band structure of phosphorene. It is shown that the NLHE is very sensitive to the band gap and temperature of the system. Moreover, we find that a phase transition occurs in the nonlinear Hall response and nonlinear spin Hall conductivity of the system under the influence of spin-orbit interaction, tuned by the strength of interaction and band gap induced in the energy spectrum of monolayer phosphorene with broken inversion symmetry.
我们研究了单层磷烯中霍尔效应家族的新成员——非线性霍尔效应(NLHE)。我们发现,由于近邻效应导致系统的反转对称性被破坏,从而产生了Berry 曲率的电偶极矩,使得磷烯表现出明显的 NLHE。值得注意的是,非线性霍尔响应呈现出中心极小值,其宽度与带隙相当,随后是两个类共振峰。有趣的是,霍尔响应的每个共振峰都在化学势的负区域发生位移,这与单层磷烯的能谱中价带和导带的位移一致。观察到两个峰是不对称的,这源于磷烯能带结构的各向异性。结果表明,NLHE 对系统的带隙和温度非常敏感。此外,我们发现,在自旋轨道相互作用的影响下,通过改变相互作用的强度和单层磷烯能谱中带隙诱导的反转对称性,系统的非线性霍尔响应和非线性自旋霍尔电导率会发生相变。