One-way transport in laser-illuminated bilayer graphene: a floquet isolator
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Dal Lago, V.
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One-way transport in laser-illuminated bilayer graphene: a floquet isolator
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Abstract
We explore the Floquet band structure and electronic transport in laser-illuminated bilayer graphene ribbons. By using a bias voltage perpendicular to the graphene bilayer we show how to get one-way charge and valley transport among two unbiased leads. In contrast to quantum pumping, our proposal uses a different mechanism based on generating a nonreciprocal band structure with a built-in directionality. The Floquet states at one edge of a graphene layer become hybridized with the continuum on the other layer, so the resulting band structure allows for one-way transport as in an isolator. Our proof of concept may serve as a building block for devices exploiting one-way states.
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URI: https://repositorio.uchile.cl/handle/2250/168735
DOI: 10.1103/PhysRevB.96.235409
ISSN: 24699969
24699950
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Physical Review B, 96, 235409 (2017)
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