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Research News: Surprising Graphene
Dirac cone - Wikipedia
Physics - Dirac cone in iron-based superconductors
3: (a) Band structure of graphene (b) Dirac cones residing on a... | Download Scientific Diagram
Crystals | Free Full-Text | Dirac Cones in Graphene, Interlayer Interaction in Layered Materials, and the Band Gap in MoS2
Dirac cone - Wikipedia
Large Bandgap Opening Between Graphene Dirac Cones Induced by Na Adsorption onto an Ir Superlattice Marco Papagno,1 Stefano Rus
Crystals | Free Full-Text | Dirac Cones in Graphene, Interlayer Interaction in Layered Materials, and the Band Gap in MoS2
Emergence of Different Replica Dirac Cones and Intra- and Intervalley Scatterings in Short-Wavelength Graphene Superlattices Modulated by an Atomic-Scale Sharp Potential | The Journal of Physical Chemistry C
Dirac cone in α-graphdiyne: a first-principles study | SpringerLink
How to create a band gap in graphene using lead - Mapping Ignorance
Physics - Dirac Cones in Boron's Version of Graphene
Cohesive band structure of carbon nanotubes for applications in quantum transport - Nanoscale (RSC Publishing) DOI:10.1039/C3NR03814A
density functional theory - DFT vs tight-binding solutions for a Dirac cone in graphene: Why is the DFT version squeezed? - Matter Modeling Stack Exchange
Does the Dirac Cone Exist in Silicene on Metal Substrates? | Scientific Reports
Spin-orbit band gaps and destruction of Dirac cones - ScienceDirect
PDF] Dirac Cones in Graphene, Interlayer Interaction in Layered Materials, and the Band Gap in MoS2 | Semantic Scholar
Direct evidence of interaction-induced Dirac cones in a monolayer silicene/Ag(111) system | PNAS
PDF] g-SiC6 Monolayer: A New Graphene-like Dirac Cone Material with a High Fermi Velocity | Semantic Scholar
Stressing the Most Important (Dirac) Points - LRSM
New State of Topological Insulators Offers New Opportunities | Stanford Synchrotron Radiation Lightsource
Graphene and Dirac Cones - YouTube
Altered States in Graphene Heterostructures
Crystals | Free Full-Text | Simultaneous Dirac-like Cones at Two Energy States in Tunable Phononic Crystals: An Analytical and Numerical Study