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Optical trapping and manipulation of nanostructures

Academic Article
Publication Date:
2013
abstract:
Optical trapping and manipulation of micrometre-sized particles was first reported in 1970. Since then, it has been successfully implemented in two size ranges: the subnanometre scale, where light-matter mechanical coupling enables cooling of atoms, ions and molecules, and the micrometre scale, where the momentum transfer resulting from light scattering allows manipulation of microscopic objects such as cells. But it has been difficult to apply these techniques to the intermediate - nanoscale - range that includes structures such as quantum dots, nanowires, nanotubes, graphene and two-dimensional crystals, all of crucial importance for nanomaterials-based applications. Recently, however, several new approaches have been developed and demonstrated for trapping plasmonic nanoparticles, semiconductor nanowires and carbon nanostructures. Here we review the state-of-the-art in optical trapping at the nanoscale, with an emphasis on some of the most promising advances, such as controlled manipulation and assembly of individual and multiple nanostructures, force measurement with femtonewton resolution, and biosensors.
Iris type:
01.01 Articolo in rivista
Keywords:
optical tweezers; nanostructures
List of contributors:
Gucciardi, PIETRO GIUSEPPE; Marago', Onofrio
Authors of the University:
GUCCIARDI PIETRO GIUSEPPE
MARAGO' ONOFRIO
Handle:
https://iris.cnr.it/handle/20.500.14243/251491
Published in:
NATURE NANOTECHNOLOGY (PRINT)
Journal
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