Low-power nano-optical vortex trapping via plasmonic diabolo nanoantennas

  • Kang, Ju-Hyung
  • Kim, Kipom
  • Ee, Ho-Seok
  • Lee, Yong-Hee
  • Yoon, Tae-Young
  • 외 2명
Citations

WEB OF SCIENCE

113
Citations

SCOPUS

116

초록

Optical vortex trapping can allow the capture and manipulation of micro-and nanometresized objects such as damageable biological particles or particles with a refractive index lower than the surrounding material. However, the quest for nanometric optical vortex trapping that overcomes the diffraction limit remains. Here we demonstrate the first experimental implementation of low-power nano-optical vortex trapping using plasmonic resonance in gold diabolo nanoantennas. The vortex trapping potential was formed with a minimum at 170 nm from the central local maximum, and allowed polystyrene nanoparticles in water to be trapped strongly at the boundary of the nanoantenna. Furthermore, a large radial trapping stiffness, similar to 0.69 pN nm(-1) W-1, was measured at the position of the minimum potential, showing good agreement with numerical simulations. This subwavelength-scale nanoantenna system capable of low-power trapping represents a significant step toward versatile, efficient nano-optical manipulations in lab-on-a-chip devices.

키워드

MANIPULATIONTWEEZERSNANOPARTICLESPARTICLESRESONATORSMICROSCOPEANTENNAS
제목
Low-power nano-optical vortex trapping via plasmonic diabolo nanoantennas
저자
Kang, Ju-HyungKim, KipomEe, Ho-SeokLee, Yong-HeeYoon, Tae-YoungSeo, Min-KyoPark, Hong-Gyu
DOI
10.1038/ncomms1592
발행일
2011-12
유형
Article
저널명
Nature Communications
2