We derive a 2+1 dimensional model with unconventional supersymmetry at the boundary of an AdSN -extended supergravity, generalizing previous results. The (unconventional) extended supersymmetry of the boundary model is instrumental in describing, within a top-down approach, the electronic properties of graphene-like 2D materials at the two Dirac points, K and K?. The two valleys correspond to the two independent sectors of the OSp(p|2) × OSp(q|2) boundary model in the p = q case, which are related by a parity transformation. The Semenoff and Haldane-type masses entering the corresponding Dirac equations are identified with the torsion parameters of the substrate in the model.

N -extended D = 4 supergravity, unconventional SUSY and graphene

Cerchiai B L
;
2020

Abstract

We derive a 2+1 dimensional model with unconventional supersymmetry at the boundary of an AdSN -extended supergravity, generalizing previous results. The (unconventional) extended supersymmetry of the boundary model is instrumental in describing, within a top-down approach, the electronic properties of graphene-like 2D materials at the two Dirac points, K and K?. The two valleys correspond to the two independent sectors of the OSp(p|2) × OSp(q|2) boundary model in the p = q case, which are related by a parity transformation. The Semenoff and Haldane-type masses entering the corresponding Dirac equations are identified with the torsion parameters of the substrate in the model.
2020
Istituto di Matematica Applicata e Tecnologie Informatiche - IMATI - Sede Secondaria Milano
Inglese
2020
1
28
http://www.scopus.com/record/display.url?eid=2-s2.0-85077896729&origin=inward
Esperti anonimi
Chern-Simons Theories
Holography and condensed matter physics (AdS/ CMT)
Supergravity Models
Elettronico
7
info:eu-repo/semantics/article
262
Andrianopoli, L; Cerchiai, BIANCA LETIZIA; D'Auria, R; Gallerati, A; Noris, R; Trigiante, M; Zanelli, J
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/382435
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