288 citations · 411 across the 5 of their papers we have counts for
6 papers
Atomic collapse, Lorentz boosts, Klein scattering, and other quantum-relativistic phenomena in graphene
Andrei Shytov, Mark Rudner, Nan Gu +2
Electrons in graphene, behaving as massless relativistic Dirac particles, provide a new perspective on the relation between condensed matter and high-energy physics. We discuss ato…
Transport in Graphene p-n Junctions in Magnetic Field
A. V. Shytov, Nan Gu, L. S. Levitov
Ballistic transport in graphene p-n junctions in the presence of magnetic field exhibits two distinct regimes: At low fields, transport is partially suppressed by the field. When t…
Quantized Transport in Graphene p-n Junctions in Magnetic Field
D. A. Abanin, L. S. Levitov
Recent experimental work on locally gated graphene layers resulting in p-n junctions have revealed quantum Hall effect in their transport behavior. We explain the observed conducta…
Energy-based Structure Prediction for d(Al70Co20Ni10)
Nan Gu, M. Mihalkovic, C. L. Henley
We use energy minimization principles to predict the structure of a decagonal quasicrystal - d(AlCoNi) - in the Cobalt-rich phase. Monte Carlo methods are then used to explore conf…
Structure prediction for cobalt-rich decagonal AlCoNi from pair potentials
Nan Gu, M. Mihalkovic, C. L. Henley
A systematic, decoration-based technique to discover the atomic structure of a decagonal quasicrystal, given pair potentials and experimentally measured lattice constants, is appli…
Co-rich decagonal Al-Co-Ni: predicting structure, orientational order, and puckering
Nan Gu, C. L. Henley, M. Mihalkovic
We apply systematic methods previously used by Mihalkovic et al. to predict the structure of the `basic' Co-rich modification of the decagonal Al70 Co20 Ni10 layered quasicrystal,…