Disorder driven crossover between anomalous Hall regimes in Fe$_3$GaTe$_2$
Disorder driven crossover between anomalous Hall regimes in Fe$_3$GaTe$_2$
The large anomalous Hall conductivity (AHC) of the Fe$_3$(Ge,Ga)Te$_2$ compounds has attracted considerable attention. Here, we expose the intrinsic nature of AHC in Fe$_3$GaTe$_2$ crystals characterized by high conductivities, which show disorder-independent AHC with a pronounced value $Ï_{xy}^{\text{c}}\approx$ 420 $Ω^{-1}$cm$^{-1}$. In the low conductivity regime, we observe the scaling relation $Ï_{xy}\proptoÏ_{xx}^{1.6}$, which crosses over to $Ï_{xy} \simeq Ï_{xy}^{\text{c}}$ as $Ï_{xx}$ increases. Disorder in low-conductivity crystals is confirmed by the broadening of a first-order transition between ferromagnetism and the ferrimagnetic ground state. Through density functional theory (DFT) calculations, we reveal that the dominant sources of Berry curvature are located a few hundred meV below the Fermi energy around the $Î$-point. Therefore, Fe$_3$GaTe$_2$ clearly exposes the disorder-induced crossover among distinct AHC regimes, previously inferred from measurements on different ferromagnets located in either side of the crossover region.
Sang-Eon Lee、Minkyu Park、W. Kice Brown、Vadym Kulichenko、Yan Xin、S. H. Rhim、Chanyong Hwang、Jaeyong Kim、Gregory T. McCandless、Julia Y. Chan、Luis Balicas
物理学
Sang-Eon Lee,Minkyu Park,W. Kice Brown,Vadym Kulichenko,Yan Xin,S. H. Rhim,Chanyong Hwang,Jaeyong Kim,Gregory T. McCandless,Julia Y. Chan,Luis Balicas.Disorder driven crossover between anomalous Hall regimes in Fe$_3$GaTe$_2$[EB/OL].(2025-07-31)[2025-08-07].https://arxiv.org/abs/2507.23243.点此复制
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