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Atomically thin spherical shell-shaped superscatterers based on Bohr model

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arxiv 1510.06838 v1 pith:5P2IFNHV submitted 2015-10-23 physics.optics

classification physics.optics
keywords bohrgraphenemodelatomicallyplasmonsresonanceshell-shapedsuperscattering
verification ladder T0 review T1 audit T2 compute T3 formal
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Graphene monolayers can be used for atomically thin three-dimensional shell-shaped superscatterer designs. Due to the excitation of the first-order resonance of transverse magnetic (TM) graphene plasmons, the scattering cross section of the bare subwavelength dielectric particle is enhanced significantly by five orders of magnitude. The superscattering phenomenon can be intuitively understood and interpreted with Bohr model. Besides, based on the analysis of Bohr model, it is shown that contrary to the TM case, superscattering is hard to occur by exciting the resonance of transverse electric (TE) graphene plasmons due to their poor field confinements.

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