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具有定制光学常数用于力和扭矩传导的多功能多层超材料纳米颗粒。

Versatile Multilayer Metamaterial Nanoparticles with Tailored Optical Constants for Force and Torque Transduction.

作者信息

Tang Ying, Ha Seungkyu, Begou Thomas, Lumeau Julien, Urbach H Paul, Dekker Nynke H, Adam Aurèle J L

机构信息

Optics Research Group, Department of Imaging Physics, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands.

Department of Bionanoscience, Kavli Institute of Nanoscience, Delft University of Technology, van der Maasweg 9, 2629 HZ Delft, The Netherlands.

出版信息

ACS Nano. 2020 Nov 24;14(11):14895-14906. doi: 10.1021/acsnano.0c04233. Epub 2020 Nov 10.

Abstract

The ability to apply force and torque directly to micro- and nanoscale particles in optical traps has a wide range of applications. While full control of both force and torque in three dimensions has been realized using top-down fabrication of rod-shaped particles composed of birefringent crystalline materials, widespread usage of such particles is limited as the optical constants of the predominant birefringent materials (quartz SiO and rutile TiO) preclude coverage of the full application space of optical trapping. Here, we show that multilayer metamaterial nanoparticles provide access to a wide range of optical constants that can be specifically tuned for each application. Selecting the material pair NbO/SiO from the library of amorphous dielectrics as our metamaterial, we show that its refractive index and birefringence can be designed by adapting the ratio of layer thicknesses. Using a robust top-down fabrication process, we show that uniformly sized, free-floating NbO/SiO particles with high birefringence at moderate refractive index are obtained at high yield. Using an optical torque wrench, we show that these particles function as joint force and torque transducers while maintaining excellent stability in aqueous solutions and can be controllably optimized for particular physical characteristics such as maximal torque transfer or rapid response time. We expect that such customizable birefringent metamaterial nanoparticles whose properties surpass those of conventional crystalline particles will provide a means to unleash the full potential of optical trapping applications.

摘要

在光阱中直接对微米和纳米级粒子施加力和扭矩的能力具有广泛的应用。虽然通过自上而下制造由双折射晶体材料组成的棒状粒子已实现对三维力和扭矩的完全控制,但此类粒子的广泛应用受到限制,因为主要双折射材料(石英SiO和金红石TiO)的光学常数排除了光阱完整应用空间的覆盖范围。在此,我们表明多层超材料纳米粒子可提供广泛的光学常数,可针对每种应用进行特定调整。从非晶电介质库中选择NbO/SiO材料对作为我们的超材料,我们表明其折射率和双折射可通过调整层厚度的比例来设计。使用稳健的自上而下制造工艺,我们表明以高产量获得了尺寸均匀、自由漂浮且在中等折射率下具有高双折射的NbO/SiO粒子。使用光学扭矩扳手,我们表明这些粒子在水溶液中保持出色稳定性的同时可作为联合力和扭矩传感器发挥作用,并且可针对特定物理特性(如最大扭矩传递或快速响应时间)进行可控优化。我们预计,这种特性超越传统晶体粒子的可定制双折射超材料纳米粒子将提供一种释放光阱应用全部潜力的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ffe/7690042/520d680cba4c/nn0c04233_0001.jpg

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