Graphene and Black Holes: novel materials to reach the unreachable
arXiv:1412.5160 · doi:10.3389/fmats.2014.00036
Abstract
The case for a dedicated laboratory, to test hep-th models on analogue systems, is briefly made. The focus is on graphene.
3 pages; invited to talk to the workshop "New Frontiers in Multiscale Modelling of Advanced Materials", ECT*, Trento, June 17-20, 2014; to appear in Frontiers in Materials
References in corpus (7)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
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- Curved Spacetimes and Curved Graphene: a status report of the Weyl-symmetry approach
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Cited by in corpus (7)
- Curved Spacetimes and Curved Graphene: a status report of the Weyl-symmetry approach
- Hunting Quantum Gravity with Analogs: the case of graphene
- Massless Rarita-Schwinger equations: Half and three halves spin solution
- Relational Supersymmetry via the Dressing Field Method and Matter-Interaction Supergeometric Framework
- Unconventional Supersymmetry via the Dressing Field Method
- Quantum Charged Spinning Massless Particles in 2+1 dimensions
- Time-loops to spot torsion on bidimensional Dirac materials with dislocations