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JOURNALS // Zapiski Nauchnykh Seminarov POMI // Archive

Zap. Nauchn. Sem. POMI, 2019 Volume 483, Pages 85–115 (Mi znsl6848)

Trapped modes in armchair graphene nanoribbons

V. A. Kozlova, S. A. Nazarovbcd, A. Orlofa

a Mathematics and Applied Mathematics, MAI, Linköping University, SE-58183 Linköping, Sweden
b St. Petersburg State University, St.-Petersburg, Russia
c Institute of Problems of Mechanical Engineering RAS, St.-Petersburg, Russia
d Peter the Great St. Petersburg Polytechnic University, St.-Petersburg, Russia

Abstract: We study scattering on an ultra-low potential in armchair graphene nanoribbon. Using the continuous Dirac model and including a couple of artificial waves in the scattering process, described by an augumented scattering matrix, we derive a condition for the existence of a trapped mode. We consider the threshold energies, where multiplicity of the continuous spectrum changes and show that a trapped mode may appear for energies slightly less than a threshold and its multiplicity does not exceed one. For energies which are higher than a threshold, there are no trapped modes, provided that the potential is sufficiently small.

Key words and phrases: trapped modes, graphene, armchair graphene nanoribbons, Dirac operator, augumented scattering matrix.

UDC: 517

Received: 28.10.2019

Language: English



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