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金属纳米球链中的表面等离子体激元特性

Plasmon-Polariton Properties in Metallic Nanosphere Chains.

作者信息

Jacak Witold Aleksander, Krasnyj Jurij, Chepok Andrej

机构信息

Department of Quantum Technology, Wrocław University of Technology, Wyb. Wyspiańskiego 27, Wrocław 50-370, Poland.

Department of Natural Science, Odessa Military Academy, Fontanskaya Doroga 10, Odessa 65009, Ukraine.

出版信息

Materials (Basel). 2015 Jun 29;8(7):3910-3937. doi: 10.3390/ma8073910.

Abstract

The propagation of collective wave type plasmonic excitations along infinite chains of metallic nanospheres has been analyzed, including near-, medium- and far-field contributions to the plasmon dipole interaction with all retardation effects taken into account. It is proven that there exist weakly-damped self-modes of plasmon-polaritons in the chain for which the propagation range is limited by relatively small Ohmic losses only. In this regime, the Lorentz friction irradiation losses on each nanosphere in the chain are ideally compensated by the energy income from the rest of the chain. The completely undamped collective waves were identified in the case of the presence of persistent external excitation of some fragment of the chain. The obtained characteristics of these excitations fit the experimental observations well.

摘要

已对集体波型等离子体激元沿金属纳米球无限链的传播进行了分析,其中考虑了所有延迟效应下等离子体偶极相互作用的近场、中场和远场贡献。结果表明,链中存在等离子体极化激元的弱阻尼自模式,其传播范围仅受相对较小的欧姆损耗限制。在这种情况下,链中每个纳米球上的洛伦兹摩擦辐照损耗通过来自链其余部分的能量收入得到理想补偿。在链的某些片段存在持续外部激发的情况下,识别出了完全无阻尼的集体波。这些激发所获得的特性与实验观测结果吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ac/5455655/818683de957e/materials-08-03910f1.jpg

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