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首页> 外文期刊>Scientific reports. >Towards nano-optical tweezers with graphene plasmons: Numerical investigation of trapping 10-nm particles with mid-infrared light
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Towards nano-optical tweezers with graphene plasmons: Numerical investigation of trapping 10-nm particles with mid-infrared light

机译:朝向具有石墨烯等级的纳米光镊子:用中红外光捕获10纳米粒子的数值研究

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摘要

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.
机译:石墨烯等离子体正在迅速涌现为用于操纵深度亚波长刻度的光的通用平台。在这里,当介电纳米颗粒位于纳米结构的石墨烯膜附近时,我们在数值上示出了可以在中红外光的照明下产生强光近场力。这些近场力归因于石墨烯等离子体模式的激发。当光强度仅为约4.4μm/μm2并提供新型等级纳米镊子的可能性,光力可以产生10nm致直径的介电粒子的有效光学捕获电位。石墨烯等级镊子可以潜在地利用纳米生物分子和颗粒的光学操纵。此外,光学诱捕/镊子可以与生物传感结合,并为使用中红外光进行研究的多功能平台。

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