arXiv Open Access 2022

Magnetically tunable Dirac and Weyl fermions in the Zintl materials family

Anan Bari Sarkar Sougata Mardanya Shin-Ming Huang Barun Ghosh Cheng-Yi Huang +5 lainnya
Lihat Sumber

Abstrak

Recent classification efforts encompassing crystalline symmetries have revealed rich possibilities for solid-state systems to support a tapestry of exotic topological states. However, finding materials that realize such states remains a daunting challenge. Here we show how the interplay of topology, symmetry, and magnetism combined with doping and external electric and magnetic field controls can be used to drive the previously unreported SrIn$_2$As$_2$ materials family into a variety of topological phases. Our first-principles calculations and symmetry analysis reveal that SrIn$_2$As$_2$ is a dual topological insulator with $Z_2=(1;000)$ and mirror Chern number $C_M= -1$. Its isostructural and isovalent antiferromagnetic cousin EuIn$_2$As$_2$ is found to be an axion insulator with $Z_4= 2$. The broken time-reversal symmetry via Eu doping in Sr$_{1-x}$Eu$_x$In$_2$As$_2$ results in a higher-order or topological crystalline insulator state depending on the orientation of the magnetic easy axis. We also find that antiferromagnetic EuIn$_2$P$_2$ is a trivial insulator with $Z_4= 0$, and that it undergoes a magnetic field-driven transition to an ideal Weyl fermion or nodal fermion state with $Z_4= 1$ with applied magnetic field. Our study identifies Sr$_{1-x}$Eu$_x$In$_2$(As, P)$_2$ as a new tunable materials platform for investigating the physics and applications of Weyl and nodal fermions in the scaffolding of crystalline and axion insulator states.

Penulis (10)

A

Anan Bari Sarkar

S

Sougata Mardanya

S

Shin-Ming Huang

B

Barun Ghosh

C

Cheng-Yi Huang

H

Hsin Lin

A

Arun Bansil

T

Tay-Rong Chang

A

Amit Agarwal

B

Bahadur Singh

Format Sitasi

Sarkar, A.B., Mardanya, S., Huang, S., Ghosh, B., Huang, C., Lin, H. et al. (2022). Magnetically tunable Dirac and Weyl fermions in the Zintl materials family. https://arxiv.org/abs/2203.09084

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2022
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓