H Masuda, H Sakai, M Tokunaga, Y Yamasaki… - Science …, 2016 - science.org
For the innovation of spintronic technologies, Dirac materials, in which low-energy excitation is described as relativistic Dirac fermions, are one of the most promising systems because of …
R Adler, CJ Kang, CH Yee… - Reports on Progress in …, 2018 - iopscience.iop.org
The design of correlated materials challenges researchers to combine the maturing, high throughput framework of DFT-based materials design with the rapidly-developing first …
Abstract Weyl (WSMs) evolve from Dirac semimetals in the presence of broken time-reversal symmetry (TRS) or space-inversion symmetry. The WSM phases in TaAs-class materials …
Magnetic Weyl semimetals (MWSMs) have attracted significant attention due to their intriguing physical properties and potential applications in spin-electronic devices. Here we …
J Liu, J Hu, H Cao, Y Zhu, A Chuang, D Graf… - Scientific reports, 2016 - nature.com
Abstract Layered compounds AMnBi2 (A= Ca, Sr, Ba, or rare earth element) have been established as Dirac materials. Dirac electrons generated by the two-dimensional (2D) Bi …
Dirac semimetals, which host Dirac fermions and represent a new state of quantum matter, have been studied intensively in condensed-matter physics. The exploration of new …
We present an extensive study of angle-dependent transverse magnetoresistance in bismuth, with a magnetic field perpendicular to the applied electric current and rotating in …
We report an experimental study of the magnetic order and electronic structure and transport of the layered pnictide EuMnSb 2, performed using neutron diffraction, angle-resolved …
JB He, Y Fu, LX Zhao, H Liang, D Chen, YM Leng… - Physical Review B, 2017 - APS
We report a study of the magnetic and magnetotransport properties of layered transition- metal pnictide CaMnSb 2. CaMnSb 2 is a quasi-two-dimensional system with an …