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Magnetic Plasmon-Enhanced Second-Harmonic Generation on Colloidal Gold Nanocups.
Ding, Si-Jing; Zhang, Han; Yang, Da-Jie; Qiu, Yun-Hang; Nan, Fan; Yang, Zhong-Jian; Wang, Jianfang; Wang, Qu-Quan; Lin, Hai-Qing.
Afiliação
  • Ding SJ; School of Mathematics and Physics , China University of Geosciences (Wuhan) , Wuhan 430074 , Hubei , China.
  • Zhang H; Department of Physics , The Chinese University of Hong Kong , Shatin, Hong Kong SAR , China.
  • Yang DJ; Department of Physics , The Chinese University of Hong Kong , Shatin, Hong Kong SAR , China.
  • Qiu YH; Department of Physics, The Institute for Advanced Studies , Wuhan University , Wuhan 430072 , Hubei , China.
  • Nan F; Beijing Computational Science Research Center , Beijing 100193 , China.
  • Yang ZJ; Department of Physics, The Institute for Advanced Studies , Wuhan University , Wuhan 430072 , Hubei , China.
  • Wang J; Department of Physics, The Institute for Advanced Studies , Wuhan University , Wuhan 430072 , Hubei , China.
  • Wang QQ; Hunan Key Laboratory of Super Microstructure and Ultrafast Process, School of Physics and Electronics , Central South University , Changsha 410083 , Hunan , China.
  • Lin HQ; Department of Physics , The Chinese University of Hong Kong , Shatin, Hong Kong SAR , China.
Nano Lett ; 19(3): 2005-2011, 2019 03 13.
Article em En | MEDLINE | ID: mdl-30721073
ABSTRACT
The magnetic plasmons of three-dimensional nanostructures have unique optical responses and special significance for optical nanoresonators and nanoantennas. In this study, we have successfully synthesized colloidal Au and AuAg nanocups with a well-controlled asymmetric geometry, tunable opening sizes, and normalized depths ( h/ b, where h is depth and b is the height of the templating PbS nanooctahedrons), variable magnetic plasmon resonance, and largely enhanced second-harmonic generation (SHG). The most-efficient SHG of the bare Au nanocups is experimentally observed when the normalized depth h/ b is adjusted to ∼0.78-0.79. We find that the average magnetic field enhancement is maximized at h/ b = ∼0.65 and reveal that the maximal SHG can be attributed to the joint action of the optimized magnetic plasmon resonance and the "lightning-rod effect" of the Au nanocups. Furthermore, we demonstrate for the first time that the AuAg heteronanocups prepared by overgrowth of Ag on the Au nanocups can synergize the magnetic and electric plasmon resonances for nonlinear enhancement. By the tailoring of the dual resonances at the fundamental excitation and second-harmonic wavelengths, the far-field SHG intensity of the AuAg nanocups is enhanced 21.8-fold compared to that of the bare Au nanocups. These findings provide a strategy for the design of nonlinear optical nanoantennas based on magnetic plasmon resonances and can lead to diverse applications ranging from nanophotonics to biological spectroscopy.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article