JOURNAL ARTICLE

Gold Nanocone Near-Field Scanning Optical Microscopy Probes

Abstract

Near-field scanning optical microscopy enables the simultaneous topographical and subdiffraction limited optical imaging of surfaces. A process is presented for the implementation of single individually engineered gold cones at the tips of atomic force microscopy cantilevers. These cantilevers act as novel high-performance optical near-field probes. In the fabrication, thin-film metallization, electron beam induced deposition of etch masks, and Ar ion milling are combined. The cone constitutes a well-defined highly efficient optical antenna with a tip radius on the order of 10 nm and an adjustable plasmon resonance frequency. The sharp tip enables high resolution topographical imaging. By controllably varying the cone size, the resonance frequency can be adapted to the application of choice. Structural properties of these sharp-tipped probes are presented together with topographical images recorded with a cone probe. The antenna functionality is demonstrated by gathering the near-field enhanced Raman signature of individual carbon nanotubes with a gold cone scanning probe.

Keywords:
Materials science Plasmon Focused ion beam Optics Near-field scanning optical microscope Microscopy Raman spectroscopy Scanning probe microscopy Cantilever Surface plasmon resonance Scanning electron microscope Optical microscope Optoelectronics Antenna (radio) Fabrication Nanotechnology Chemistry Ion Physics

Metrics

85
Cited By
6.99
FWCI (Field Weighted Citation Impact)
56
Refs
0.97
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Near-Field Optical Microscopy
Physical Sciences →  Engineering →  Biomedical Engineering
Plasmonic and Surface Plasmon Research
Physical Sciences →  Engineering →  Biomedical Engineering
Nanowire Synthesis and Applications
Physical Sciences →  Engineering →  Biomedical Engineering

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