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Graphene homojunction: closed-edge bilayer graphene by pseudospin interaction

机译:石墨烯同质结:closed-edge双分子层石墨烯由pseudospin交互

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摘要

Depending on the sublattices they are propagated in, low-energy electrons or holes are labeled with pseudospin. By engineering pseudospin interactions, we propose that two critical features of a junction, i.e., band gap opening and spatial charge separation, can be realized in graphene layers with proper stacking. We also demonstrate theoretically that such a graphene diode may play a role in future pseudospin electronics such as for harvesting solar energy.
机译:根据格传播低能电子或空穴标记pseudospin。交互,我们建议两个关键结的特性,即带隙和空间电荷分离,可以实现石墨烯层与适当的叠加。从理论上证明,这种石墨烯在未来的pseudospin二极管可能扮演一个角色获取太阳能等电子产品。

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