A strongly coupled anyon material
arXiv:1412.1489 · doi:10.1007/JHEP11(2015)214
Abstract
We use alternative quantisation of the D3-D5 system to explore properties of a strongly coupled anyon material at finite density and temperature. We study the transport properties of the material and find both diffusion and massive holographic zero sound modes. By studying the anyon number conductivity we also find evidence for the anyonic analogue of the metal-insulator transition.
19 pages, 6 figures
References in corpus (6)
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Boundary Conditions and Dualities: Vector Fields in AdS/CFT
- Holographic Description of the Phase Diagram of a Chiral Symmetry Breaking Gauge Theory
- Real-time gauge/gravity duality and ingoing boundary conditions
- Fluctuations in finite density holographic quantum liquids
- A Holographic Quantum Hall Ferromagnet
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