Cite this article:
Runkun Chen, Cui Yang, Yuping Jia, Liwei Guo, Jianing Chen. Plasmon reflection reveals local electronic properties of natural graphene wrinklesJ. Chin. Phys. B, 2019, 28(11): 117302.
| Runkun Chen, Cui Yang, Yuping Jia, Liwei Guo, Jianing Chen. Plasmon reflection reveals local electronic properties of natural graphene wrinklesJ. Chin. Phys. B, 2019, 28(11): 117302. |
Plasmon reflection reveals local electronic properties of natural graphene wrinkles
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Abstract
We systematically studied surface plasmons reflection by graphene wrinkles with different heights on SiC substrate. Combined with numerical simulation, we found that the geometry corrugation of a few nanometer height wrinkle alone does not causes a reflection of graphene plasmons. Instead, the separated wrinkle from substrate exhibits a nonlinear spatial Fermi energy distribution along the wrinkle, which acts as a heterojunction. Therefor a higher graphene wrinkle induces a stronger damped region when propagating graphene surface plasmons encounter the wrinkle and get reflected. -
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