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Photonic realization of the deformed Dirac equation via the segmented graphene nanoribbons under inhomogeneous strain
Authors:M. R. Setare  C. Noh  Sh. Dehdashti
Affiliation:1. Department of Science, University of Kurdistan, Sanandaj, Iran;2. Department of Physics, Kyungpook National University, Daegu, Korea;3. School of Information Systems, Queensland University of Technology, Brisbane, Australia;4. Department of Electrical and Computer Engineering, University of Wisconsin–Madison, Madison, WI, USA
Abstract:ABSTRACT

Starting from an engineered periodic optical structure formed by waveguide arrays comprised of two interleaved lattices, we simulate a deformed Dirac equation. We show that the system also simulates graphene nanoribbons under strain. This optical analogue allows us to study the phenomenon of Zitterbewegung for the modified Dirac equation. Our results show that the amplitude of Zitterbewegung oscillations changes as the deformation parameter is changed.
Keywords:Photonic waveguides  graphene  deformed Dirac equation  Zitterbewegung
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