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Fermi point
The Electronic Properties of the Graphene and Carbon Nanotubes: Ab Initio Density Functional Theory Investigation
Nanotubes Electronics
Transport, Criticality, and Chaos in Fermionic Quantum Matter at Nonzero Density
Physics 215C: Particles and Fields Spring 2019
Arxiv:Cond-Mat/0601372V5 [Cond-Mat.Str-El] 18 Apr 2006 .E Volovik E
Emergent Weyl Spinors in Multi-Fermion Systems
Chiral Anomaly and Transport in Weyl Metals
Momentum Space Topology in Standard Model and in Condensed Matter
Electronic Band Structure of Isolated and Bundled Carbon Nanotubes
Nodal Line Entanglement Entropy: Generalized Widom Formula from Entanglement Hamiltonians
Nanotubes Electronics
Arxiv:Cond-Mat/9503150V2 31 Mar 1995
Lecture Notes on Many-Body Theory
Destruction of the Fermi Surface in Underdoped High-Tc Superconductors
String Theory on Thin Semiconductors: Holographic Realization of Fermi Points and Surfaces
From Semiconductors to Quantum Gravity: to Centenary of Matvei
Physics of Carbon Nanotube Electronic Devices
Analogies Between the Black Hole Interior and the Type II Weyl Semimetals
Top View
In Situ Band Gap Engineering of Carbon Nanotubes
Weyl Semi-Metal Phase
HOT Graphene and HOT Graphene Nanotubes
The Electronic Properties of Carbon Nanotubes
Interacting Electrons in One Dimension Beyond the Luttinger-Liquid Limit
Topological Semimetals: from Standard Model to Flat Band
Single Wall Carbon Nanotube
Fractional Excitation in Low Dimensional System
Non-Fermi Liquids Schofield, Andrew
Luttinger's Theorem and Bosonization of the Fermi Surface
Chiral Anomaly in Dirac Semimetals Due to Dislocations M
Arxiv:1806.10558V1 [Cond-Mat.Mes-Hall] 27 Jun 2018 R Eaae Ytefiiedsac Nmmnu Pc R Aldwe Called Hand Are - Space Right Momentum the in and Distance Handed finite Han [8]
0 Carbon Nanotube Electronics
Electronic Properties and Applications of Single-Walled Carbon Nanotubes
Anomalous Hall Effect, Dissipationless Currents, and Quasiparticle Berry Phases: a New Topological Ingredient in the Fermi-Liquid Theory of Metals
Superconductivity in Carbon Nanotube Ropes
Lectures 15-16 Graphene and Carbon Nanotubes
Electronic Structure of Carbon Nanotube Ropes