SV Syzranov, L Radzihovsky - Annual Review of Condensed …, 2018 - annualreviews.org
It is commonly believed that a noninteracting disordered electronic system can undergo only the Anderson metal-insulator transition. It has been suggested, however, that a broad class …
In chiral crystals crystalline symmetries can protect multifold fermions, pseudorelativistic masless quasiparticles that have no high-energy counterparts. Their realization in transition …
We reconsider the phase diagram of a three-dimensional Z 2 topological insulator in the presence of short-ranged potential disorder, with the insight that nonperturbative rare states …
Dirac-Weyl semimetals are unique three-dimensional (3D) phases of matter with gapless electrons and novel electrodynamic properties believed to be robust against weak …
Although Lorentz invariance forbids the presence of a term that tilts the energy-momentum relation in the Weyl Hamiltonian, a tilted dispersion is not forbidden and, in fact, generic for …
One of the fundamental facts of condensed matter physics is that sufficient amount of disorder always turns a Fermi-liquid metal into an Anderson insulator: a compressible but …
The gapless Bogoliubov-de Gennes (BdG) quasiparticles of a clean three-dimensional spinless px+ ipy superconductor provide an intriguing example of a thermal Hall semimetal …
E Brillaux, AA Fedorenko, IA Gruzberg - Physical Review B, 2024 - APS
We study a non-Anderson disorder driven quantum phase transition in a semi-infinite Dirac semimetal with a flat boundary. The conformally invariant boundary conditions, which …
B Sbierski, C Fräßdorf - Physical Review B, 2019 - APS
The self-consistent Born approximation quantitatively fails to capture disorder effects in semimetals. We present an alternative, simple-to-use nonperturbative approach to calculate …