Ontology highlight
ABSTRACT:
SUBMITTER: Ramshaw BJ
PROVIDER: S-EPMC5992152 | biostudies-literature | 2018 Jun
REPOSITORIES: biostudies-literature
Ramshaw B J BJ Modic K A KA Shekhter Arkady A Zhang Yi Y Kim Eun-Ah EA Moll Philip J W PJW Bachmann Maja D MD Chan M K MK Betts J B JB Balakirev F F Migliori A A Ghimire N J NJ Bauer E D ED Ronning F F McDonald R D RD
Nature communications 20180607 1
Weyl fermions are a recently discovered ingredient for correlated states of electronic matter. A key difficulty has been that real materials also contain non-Weyl quasiparticles, and disentangling the experimental signatures has proven challenging. Here we use magnetic fields up to 95 T to drive the Weyl semimetal TaAs far into its quantum limit, where only the purely chiral 0th Landau levels of the Weyl fermions are occupied. We find the electrical resistivity to be nearly independent of magnet ...[more]