Tunable rainbow light trapping in ultrathin resonator arrays

Author:

Dixon Katelyn,Montazeri Arthur O.,Shayegannia MoeinORCID,Barnard Edward S.,Cabrini StefanoORCID,Matsuura Naomi,Holman Hoi-YingORCID,Kherani Nazir P.

Abstract

AbstractRainbow light trapping in plasmonic devices allows for field enhancement of multiple wavelengths within a single device. However, many of these devices lack precise control over spatial and spectral enhancement profiles and cannot provide extremely high localised field strengths. Here we present a versatile, analytical design paradigm for rainbow trapping in nanogroove arrays by utilising both the groove-width and groove-length as tuning parameters. We couple this design technique with fabrication through multilayer thin-film deposition and focused ion beam milling, which enables the realisation of unprecedented feature sizes down to 5 nm and corresponding extreme normalised local field enhancements up to 103. We demonstrate rainbow trapping within the devices through hyperspectral microscopy and show agreement between the experimental results and simulation. The combination of expeditious design and precise fabrication underpins the implementation of these nanogroove arrays for manifold applications in sensing and nanoscale optics.

Funder

CMC Microsystems

Mitacs

Mitacs Globalink

DOE | Office of Science

Publisher

Springer Science and Business Media LLC

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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