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Origin and future of plasmonic optical tweezers
Journal article   Open access   Peer reviewed

Origin and future of plasmonic optical tweezers

Jer-Shing Huang and Ya-Tang Yang
Nanomaterials, Vol.5(2), pp.1048-1065
12/06/2015

Abstract

Brownian motion Nanomanipulation Nanoplasmonics Near-field optics Optical trapping Optical tweezers Plasmonics Surface plasmon
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and enable the trapping of nanoscale objects. Extension of the trapping and manipulation of nanoscale objects with nanometer position precision opens up unprecedented opportunities for applications in the fields of biology, chemistry and statistical and atomic physics. Potential applications include direct molecular manipulation, lab-on-a-chip applications for viruses and vesicles and the study of nanoscale transport. This paper reviews the recent research progress and development bottlenecks and provides an overview of possible future directions in this field. © 2015 by the authors.
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https://doi.org/10.3390/nano5021048View
Published (Version of record) Open

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