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Revealing the Chiroptical Response of Plasmonic Nanostructures at the Nanofemto Scale
Author(s) -
Shuai Zu,
Quan Sun,
En Cao,
Tomoya Oshikiri,
Hiroaki Misawa
Publication year - 2021
Publication title -
nano letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.853
H-Index - 488
eISSN - 1530-6992
pISSN - 1530-6984
DOI - 10.1021/acs.nanolett.1c01322
Subject(s) - plasmon , nanorod , circular polarization , ultrashort pulse , nanophotonics , polarization (electrochemistry) , photonics , physics , nanostructure , circular dichroism , nanoscopic scale , metamaterial , wavelength , optoelectronics , optics , materials science , molecular physics , chemistry , nanotechnology , laser , crystallography , microstrip
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored and unclear. Here, two orthogonally oriented Au nanorods as a prototype were investigated, with a giant chiroptical response caused by antisymmetric and symmetric mode excitations for obliquely incident left-handed circular polarization (LCP) and right-handed circular polarization (RCP) light. Time-resolved photoemission electron microscopy (PEEM) was employed to measure the near-field spatial distributions, spectra, and spatiotemporal dynamics of plasmonic modes associated with the chiroptical responses at the nanofemto scale, verifying the characteristic near-field distributions at the resonant wavelengths of the two modes and a very large spectral dichroism for LCP and RCP. More importantly, eigenmode excitations and their contributions to the ultrafast plasmonic chiroptical response in the space-time domain were directly revealed, promoting a full understanding of the ultrafast chiral origin in complex nanostructures. These findings open a way to design chiroptical nanophotonic devices for spatiotemporal control of chiral light-matter interactions.

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