\(\mathcal{N}\)-extended D = 4 supergravity, unconventional SUSY and graphene
DOI10.1007/JHEP01(2020)084zbMath1434.83153arXiv1910.03508OpenAlexW3122283630WikidataQ126343523 ScholiaQ126343523MaRDI QIDQ2185305
R. Noris, Mario Trigiante, Laura Andrianopoli, Jorge Zanelli, Antonio Gallerati, Riccardo D'auria, Bianca L. Cerchiai
Publication date: 4 June 2020
Published in: Journal of High Energy Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1910.03508
Supergravity (83E50) Supersymmetric field theories in quantum mechanics (81T60) Geometrodynamics and the holographic principle (83E05) Eta-invariants, Chern-Simons invariants (58J28)
Related Items (7)
Cites Work
- Supersymmetry of a different kind
- Wess-Zumino supersymmetric phase and superconductivity in graphene
- Gauge theory correlators from non-critical string theory
- Supersymmetric structure of quantum Hall effects in graphene
- Weyl-gauge symmetry of graphene
- Effects of topological defects and local curvature on the electronic properties of planar graphene
- The large \(N\) limit of superconformal field theories and supergravity
- Anti de Sitter space and holography
- Dynamical contents of unconventional supersymmetry
- Unconventional supersymmetry at the boundary of \(\mathrm{AdS}_{4}\) supergravity
- Unconventional supersymmetry and its breaking
- On a five-dimensional Chern-Simons AdS supergravity without gravitino
- (Anti-)de Sitter, Poincaré, super symmetries, and the two Dirac points of graphene
- Chern-Simons-Rozansky-Witten topological field theory
- The quantum theory of Chern-Simons supergravity
- Janus configurations, Chern-Simons couplings, and the {\(\theta\)}-angle in \(\mathcal{N} = 4\) super Yang-Mills theory
- Dirac equation for cold atoms in artificial curved spacetimes
This page was built for publication: \(\mathcal{N}\)-extended D = 4 supergravity, unconventional SUSY and graphene