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Reconfigurable optical assembly of nanostructures

Author

Listed:
  • Yunuen Montelongo

    (Imperial College London)

  • Ali K. Yetisen

    (Harvard Medical School and Wellman Center for Photomedicine, Massachusetts General Hospital)

  • Haider Butt

    (Microengineering and Nanotechnology Laboratory, School of Mechanical Engineering, University of Birmingham)

  • Seok-Hyun Yun

    (Harvard Medical School and Wellman Center for Photomedicine, Massachusetts General Hospital
    Massachusetts Institute of Technology)

Abstract

Arrangements of nanostructures in well-defined patterns are the basis of photonic crystals, metamaterials and holograms. Furthermore, rewritable optical materials can be achieved by dynamically manipulating nanoassemblies. Here we demonstrate a mechanism to configure plasmonic nanoparticles (NPs) in polymer media using nanosecond laser pulses. The mechanism relies on optical forces produced by the interference of laser beams, which allow NPs to migrate to lower-energy configurations. The resulting NP arrangements are stable without any external energy source, but erasable and rewritable by additional recording pulses. We demonstrate reconfigurable optical elements including multilayer Bragg diffraction gratings, volumetric photonic crystals and lenses, as well as dynamic holograms of three-dimensional virtual objects. We aim to expand the applications of optical forces, which have been mostly restricted to optical tweezers. Holographic assemblies of nanoparticles will allow a new generation of programmable composites for tunable metamaterials, data storage devices, sensors and displays.

Suggested Citation

  • Yunuen Montelongo & Ali K. Yetisen & Haider Butt & Seok-Hyun Yun, 2016. "Reconfigurable optical assembly of nanostructures," Nature Communications, Nature, vol. 7(1), pages 1-8, November.
  • Handle: RePEc:nat:natcom:v:7:y:2016:i:1:d:10.1038_ncomms12002
    DOI: 10.1038/ncomms12002
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