Open Access
Open access
Optics Express, volume 32, issue 14, pages 24200

Non-contact imaging of terahertz surface currents with aperture-type near-field microscopy

Sarah Norman 1
John Seddon 1
Yuezhen Lu 1
Lucy L Hale 2
Abdullah Zaman 3
Sadhvikas J Addamane 4
Igal Brener 4
Riccardo Degl’Innocenti 5
Oleg Mitrofanov 4
Show full list: 9 authors
Publication typeJournal Article
Publication date2024-06-17
Journal: Optics Express
scimago Q1
SJR0.998
CiteScore6.6
Impact factor3.2
ISSN10944087
PubMed ID:  39538866
Abstract

Terahertz (THz) near-field imaging and spectroscopy provide valuable insights into the fundamental physical processes occurring in THz resonators and metasurfaces on the subwavelength scale. However, so far, the mapping of THz surface currents has remained outside the scope of THz near-field techniques. In this study, we demonstrate that aperture-type scanning near-field microscopy enables non-contact imaging of THz surface currents in subwavelength resonators. Through extensive near-field mapping of an asymmetric D-split-ring THz resonator and full electromagnetic simulations of the resonator and the probe, we demonstrate the correlation between the measured near-field images and the THz surface currents. The observed current dynamics in the interval of several picoseconds reveal the interplay between several excited modes, including dark modes, whereas broadband THz near-field spectroscopy analysis enables the characterization of electromagnetic resonances defined by the resonator geometry.

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