English

Magnetic dilution effect and topological phase transitions in (Mn$_{1-x}$Pb$_x$)Bi$_2$Te$_4$

Materials Science 2022-07-25 v1 Strongly Correlated Electrons

Abstract

As the first intrinsic antiferromagnetic (AFM) topological insulator (TI), MnBi2_2Te4_4 has provided a material platform to realize various emergent phenomena arising from the interplay of magnetism and band topology. Here by investigating (Mn1x_{1-x}Pbx_x)Bi2_2Te4_4 (0x0.82)(0\leq x \leq 0.82) single crystals via the x-ray, electrical transport, magnetometry and neutron measurements, chemical analysis, external pressure, and first-principles calculations, we reveal the magnetic dilution effect on the magnetism and band topology in MnBi2_2Te4_4. With increasing xx, both lattice parameters aa and cc expand linearly by around 2\%. All samples undergo the paramagnetic to A-type antiferromagnetic transition with the Neˊ\acute{e}el temperature decreasing lineally from 24 K at x=0x=0 to 2 K at x=0.82x=0.82. Our neutron data refinement of the x=0.37x=0.37 sample indicates that the ordered moment is 4.3(1)μB\mu_B/Mn at 4.85 K and the amount of the MnBi_{\rm{Bi}} antisites is negligible within the error bars. Isothermal magnetization data reveal a slight decrease of the interlayer plane-plane antiferromagnetic exchange interaction and a monotonic decrease of the magnetic anisotropy, due to diluting magnetic ions and enlarging the unit cell. For x=0.37x=0.37, the application of external pressures enhances the interlayer antiferromagnetic coupling, boosting the Neˊ\acute{e}el temperature at a rate of 1.4 K/GPa and the saturation field at a rate of 1.8 T/GPa. Furthermore, our first-principles calculations reveal that the band inversion in the two end materials, MnBi2_2Te4_4 and PbBi2_2Te4_4, occurs at the Γ\Gamma and ZZ point, respectively, while two gapless points appear at x=x = 0.44 and x=x = 0.66, suggesting possible topological phase transitions with doping.

Keywords

Cite

@article{arxiv.2206.01324,
  title  = {Magnetic dilution effect and topological phase transitions in (Mn$_{1-x}$Pb$_x$)Bi$_2$Te$_4$},
  author = {Tiema Qian and Yueh-Ting Yao and Chaowei Hu and Erxi Feng and Huibo Cao and Igor I. Mazin and Tay-Rong Chang and Ni Ni},
  journal= {arXiv preprint arXiv:2206.01324},
  year   = {2022}
}

Comments

10 pages, 7 figures