Towards nano-optical tweezers with graphene plasmons: Numerical investigation of trapping 10-nm particles with mid-infrared light

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作者
Jianfa Zhang
Wenbin Liu
Zhihong Zhu
Xiaodong Yuan
Shiqiao Qin
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[1] College of Optoelectronic Science and Engineering,
[2] National University of Defense Technology,undefined
[3] State Key Laboratory of High Performance Computing,undefined
[4] National University of Defense Technology,undefined
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Graphene plasmons are rapidly emerging as a versatile platform for manipulating light at the deep subwavelength scale. Here we show numerically that strong optical near-field forces can be generated under the illumination of mid-IR light when dielectric nanoparticles are located in the vicinity of a nanostructured graphene film. These near-field forces are attributed to the excitation of the graphene’s plasmonic mode. The optical forces can generate an efficient optical trapping potential for a 10-nm-diameter dielectric particle when the light intensity is only about about 4.4 mW/μm2 and provide possibilities for a new type of plasmonic nano-tweezers. Graphene plasmonic tweezers can be potentially exploited for optical manipulation of nanometric biomolecules and particles. Moreover, the optical trapping/tweezing can be combined with biosensing and provide a versatile platform for studing biology and chemistry with mid-IR light.
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  • [1] Towards nano-optical tweezers with graphene plasmons: Numerical investigation of trapping 10-nm particles with mid-infrared light
    Zhang, Jianfa
    Liu, Wenbin
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    Yuan, Xiaodong
    Qin, Shiqiao
    SCIENTIFIC REPORTS, 2016, 6
  • [2] Towards Nano-optical Tweezers with Graphene Plasmons
    Liu, Wenbin
    Zhang, Jianfa
    Zhu, Zhihong
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    Qin, Shiqiao
    2016 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS), 2016, : 3133 - 3134