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王文慧

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  • Education Level: With Certificate of Graduation for Doctorate Study
  • Professional Title: 副教授
  • Status: Employed
  • Alma Mater: 中国科学院大学
  • Have Any Overseas Experience: No
  • Foreign Personnel or Not: No

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Plasmon Waveguiding in Nanowires

Release Time:2025-04-30
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Date:
2025-04-30
Title of Paper:
Plasmon Waveguiding in Nanowires
Journal:
Chemical Reviews
Summary:
Nanowires supporting propagating surface plasmons can function as nanowaveguides to realize the light guiding with field confinement beyond the diffraction limit, providing fundamental building blocks for nanophotonic integrated circuits. This review covers the recent developments of plasmon waveguiding in nanowires, mainly including plasmon waveguiding in metal nanowires, coupling of nanowire plasmons and emitters, hybrid nanowire waveguides and plasmonic gain, and nanowire photonic devices. We first introduce the main techniques for fabricating metal nanowires, the plasmon modes in metal nanowires and the excitation/detection methods. We then discuss the fundamental properties of plasmon propagation and emission, including zigzag, chiral and spin-dependent propagation, mode conversion, loss and propagation length, group velocity, terminal emission, and leaky radiation. Then the interactions between nanowires and emitters are reviewed, especially the coupling of single nanowires and single quantum emitters. Finally, we briefly introduce the hybrid nanowire waveguide composed of a semiconductor nanowire and a metal film with an intervening thin insulator and highlight a few nanophotonic devices based on plasmonic nanowire networks or plasmonic-photonic hybrid nanowire structures.
Co-author:
Hong Wei, Deng Pan, Shunping Zhang, Zhipeng Li, Qiang Li, Ning Liu, Wenhui Wang,
Volume:
118
Page Number:
2882-2926
Translation or Not:
No
Date of Publication:
2018-02-15