4.6 Article

Edge states and enhanced spin-orbit interaction at graphene/graphane interfaces

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PHYSICAL REVIEW B
卷 81, 期 16, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.81.165439

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  1. Swiss NF
  2. NCCR Nanoscience Basel

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We study the electronic properties of interfaces between graphene and graphane, a hydrogenated version of graphene. It is shown that these interfaces are useful for creating an effective edge for the pi-electrons of graphene. If the interface is oriented along a zigzag direction, edge states are found. We consider two different interface types, corresponding to usual zigzag and bearded graphene edges. It is shown that, because of a broken symmetry, the spin-orbit interaction is strongly amplified by the graphene/graphane interface and that the edge states are particularly susceptible to this amplification. As an application, we propose a device which is capable of converting spin polarizations to valley polarizations and vice versa. Exploiting the amplification of the spin-orbit interaction, this conversion may be performed at temperatures near one Kelvin. We show that these edge states give rise to quantum spin and/or valley Hall effects.

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