Administration of EMP-related Publications
year | 2019 |
author(s) | S. Dzsaber, D.A. Zocco, A. McCollam, F. Weickert, R. McDonald, M. Taupin, X. Yan, A. Prokofiev, L.M.K. Tang, B. Vlaar, L. Stritzinger, M. Jaime, Q. Si, and S. Paschen |
title | Quenching a Weyl-Kondo semimetal by magnetic field |
document type | Paper |
source | arXiv:1906.01182 |
arxiv | https://arxiv.org/abs/1906.01182 |
EMP/Horizon2020 | This publication does not include a EMP/Horizon2020 acknowledgement. |
abstract |
With the advent of topology in electronic materials the number of predicted quantum phases has literally exploded. Most of them, however, still await firm experimental identification. In strongly correlated electron systems, scanning their low-temperature phase diagrams by varying a nonthermal control parameter has been instrumental in delineating phases defined by a Landau order parameter. Here we show that this approach is versatile also for strongly correlated topological phases. We use Hall effect measurements to probe how the time reversal symmetry invariant Weyl-Kondo semimetal Ce |