4.7 Article

Ion-beam assisted laser fabrication of sensing plasmonic nanostructures

Journal

SCIENTIFIC REPORTS
Volume 6, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/srep19410

Keywords

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Funding

  1. Russian Foundation for Basic Research [13-02-00971-a, 14-02-31323-mol_a, 14-29-07203-ofi_m, 15-02-03173-a, 15-02-08810-a, 15-32-50026 mol_nr]
  2. Presidium of Russian Academy of Science
  3. RF Ministry of Science and Education [MK-3056.2015.2]
  4. Government of the Russian Federation through ITMO Visiting Professorship Program [074-U01]
  5. Russian Science Foundation [15-19-00172]

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Simple high-performance, two-stage hybrid technique was developed for fabrication of different plasmonic nanostructures, including nanorods, nanorings, as well as more complex structures on glass substrates. In this technique, a thin noble-metal film on a dielectric substrate is irradiated by a single tightly focused nanosecond laser pulse and then the modified region is slowly polished by an accelerated argon ion (Ar+) beam. As a result, each nanosecond laser pulse locally modifies the initial metal film through initiation of fast melting and subsequent hydrodynamic processes, while the following Ar+-ion polishing removes the rest of the film, revealing the hidden topography features and fabricating separate plasmonic structures on the glass substrate. We demonstrate that the shape and lateral size of the resulting functional plasmonic nanostructures depend on the laser pulse energy and metal film thickness, while subsequent Ar+-ion polishing enables to vary height of the resulting nanostructures. Plasmonic properties of the fabricated nanostructures were characterized by dark-field micro-spectroscopy, Raman and photoluminescence measurements performed on single nanofeatures, as well as by supporting numerical calculations of the related electromagnetic near-fields and Purcell factors. The developed simple two-stage technique represents a new step towards direct large-scale laser-induced fabrication of highly ordered arrays of complex plasmonic nanostructures.

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