论文标题

低浓度SB掺杂获得的铁磁MNBI4TE7:探索拓扑量子状态的有前途的平台

Ferromagnetic MnBi4Te7 obtained with low concentration Sb doping: A promising platform for exploring topological quantum states

论文作者

Guan, Y. D., Yan, C. H., Lee, S. H., Gui, X., Ning, W., Ning, J. L., Zhu, Y. L., Kothakonda, M., Xu, C. Q., Ke, X. L., Sun, J. W., Xie, W. W., Yang, S. L., Mao, Z. Q.

论文摘要

磁相,化学电位和结构的调整对于观察$ MNBI_2TE_4(BI_2TE_3)_m $(M = 0、1、2和3)的各种外来拓扑量子状态至关重要。在这里,我们在$ MN(BI_ {1-X} SB_X)_4TE_7 $中显示了具有手性晶体结构的铁磁(FM)相,该阶段是通过调整生长条件和SB浓度而获得的。与以前报道的$ MN(BI_ {1-X} SB_X)_4TE_7 $(仅在高SB掺杂水平下显示FM过渡),我们的样本显示FM过渡($ T_C $ = 13.5 K),掺杂水平为15%-27%。此外,我们的单晶体X射线衍射结构的改进发现SB掺杂导致P3的空间群的手性结构,与父级化合物$ MNBI_4TE_7 $的中心对称P-3M1晶体结构形成鲜明对比。通过ARPES的测量,我们还证明了非平凡带拓扑保存在SB掺杂的FM样品中。鉴于该系统的非平凡带拓扑对于低SB掺杂水平仍然很强,因此我们成功地使FM $ MN(BI_ {1-X} SB_X)_4TE_7 $,$ X $ = 0.15、0.175、0.175、0.175、0.2和0.27 PAVES可以实现预测的拓扑量子量子状态,例如Axemopic Quantopic Statim axemion Intem insex Insulator semirator and semirator。此外,我们还观察到抗磁磁性$ MNBI_4TE_7 $和FM $ MN(BI_ {1-X} SB_X)_4TE_7 $样品的磁性玻璃行为,我们相信这起源于群集自旋玻璃相位与远距离AFM/FM订单共存。我们还讨论了抗岩石Mn离子如何影响层间磁耦合以及该系统中FM Intayer耦合如何稳定。

The tuning of magnetic phase, chemical potential, and structure is crucial to observe diverse exotic topological quantum states in $MnBi_2Te_4(Bi_2Te_3)_m$ (m = 0, 1, 2, & 3). Here we show a ferromagnetic (FM) phase with a chiral crystal structure in $Mn(Bi_{1-x}Sb_x)_4Te_7$, obtained via tuning the growth conditions and Sb concentration. Unlike previously reported $Mn(Bi_{1-x}Sb_x)_4Te_7$, which exhibits FM transitions only at high Sb doping levels, our samples show FM transitions ($T_C$ = 13.5 K) at 15%-27% doping levels. Furthermore, our single crystal x-ray diffraction structure refinements find Sb doping leads to a chiral structure with the space group of P3, contrasted with the centrosymmetric P-3m1 crystal structure of the parent compound $MnBi_4Te_7$. Through ARPES measurements, we also demonstrated that the non-trivial band topology is preserved in the Sb-doped FM samples. Given that the non-trivial band topology of this system remains robust for low Sb doping levels, our success in making FM $Mn(Bi_{1-x}Sb_x)_4Te_7$ with $x$ = 0.15, 0.175, 0.2 & 0.27 paves the way for realizing the predicted topological quantum states such as axion insulator and Weyl semimetals. Additionally, we also observed magnetic glassy behavior in both antiferromagnetic $MnBi_4Te_7$ and FM $Mn(Bi_{1-x}Sb_x)_4Te_7$ samples, which we believe originates from cluster spin glass phases coexisting with long-range AFM/FM orders. We have also discussed how the antisite Mn ions impact the interlayer magnetic coupling and how FM interlayer coupling is stabilized in this system.

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