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Direct laser printing of chiral plasmonic nanojets by vortex beams

Published under licence by IOP Publishing Ltd
, , Citation S A Syubaev 2018 J. Phys.: Conf. Ser. 951 012025 DOI 10.1088/1742-6596/951/1/012025

1742-6596/951/1/012025

Abstract

Donut-shaped laser radiation, carrying orbital angular momentum, namely optical vortex, was recently shown to provide vectorial mass transfer, twisting transiently molten material and producing chiral micro-scale structures on surfaces of different bulk materials upon their resolidification. In this paper, we show that nanosecond laser vortices can produce chiral nanoneedles (nanojets) of variable size on thin films of such plasmonic materials, as silver and gold films, covering thermally insulating substrates. These results suggest optical interference of the incident and reflected laser beams as a source of complex surface intensity distributions in metal films, possessing spiral components and driving both center-symmetric and spiral thermocapillary melt flows to yield in frozen nanoneedles with their pre-determined spiral nanocarving.

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10.1088/1742-6596/951/1/012025