Graphene tests of Klein phenomena
arXiv:1202.1470 · doi:10.1088/1751-8113/44/47/475305
Abstract
Graphene is characterized by chiral electronic excitations. As such it provides a perfect testing ground for the production of Klein pairs (electron/holes). If confirmed, the standard results for barrier phenomena must be reconsidered with, as a byproduct, the accumulation within the barrier of holes.
8 pages
References in corpus (12)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Chiral tunneling and the Klein paradox in graphene
- Quantum interference and Klein tunneling in graphene heterojunctions
- Evidence of Klein tunneling in graphene p-n junctions
- First direct observation of Dirac fermions in graphite
- Klein Backscattering and Fabry-Perot Interference in Graphene Heterojunctions
- The Schwinger mechanism and graphene
- Casimir Forces and Graphene Sheets
- Minimal conductivity in bilayer graphene
- Landau Level Collapse in Gated Graphene Structures
- Barrier Paradox in the Klein Zone