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Conversion of a Helical Surface Plasmon Polariton into a Spiral Surface Plasmon Polariton at the Outlet of a Metallic Nanohole

  • Yun Cheng Ku
  • , Jiunn Woei Liaw*
  • , Szu Yao Mao
  • , Mao Kuen Kuo*
  • *Corresponding author for this work
  • National Taiwan University
  • Ming Chi University of Technology
  • Chang Gung Memorial Hospital

Research output: Contribution to journalJournal Article peer-review

5 Scopus citations

Abstract

The conversion of a helical surface plasmon polariton (SPP) creeping out of a circular nanohole in a thick metal (Ag or Au) film into a spiral (Hankel type) SPP outward propagating at the film's interface is studied theoretically. The dispersion relations of SPPs of various modes in a nanohole, calculated from a transcendental equation, show that the propagation length of an SPP of mode 1 is much larger than the other modes in a specific frequency band, which is dependent on the nanohole size. In this band, the streamlines of the Poynting vector (energy flux) of mode-1 SPP in nanohole exhibit helixes; the surface component of the energy flux is perpendicular to the phase front of the SPP. Numerical results show that, after a helical SPP tunnels through a nanohole, most of the energy flux fans out at the outlet as a dipole radiation. The spatial phase distribution of Ezabove the interface indicates that the transmission light carries orbital angular momentum with a topological charge of 1. Additionally, a part of the helical SPP creeping along the edge of an outlet naturally converts into a spiral (Hankel type of order 1) SPP outward propagating at the film's interface; both SPPs have the same handedness. Moreover, the interferences of multi SPPs generating from two nanoholes and even from a two-dimensional nanohole array are also related to the spiral SPP.

Original languageEnglish
Pages (from-to)10420-10428
Number of pages9
JournalACS Omega
Volume7
Issue number12
DOIs
StatePublished - 29 03 2022

Bibliographical note

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© 2022 American Chemical Society. All rights reserved.

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