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首页> 外文期刊>Optics Letters >Design of nanoslotted photonic crystal waveguide cavities for single nanoparticle trapping and detection
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Design of nanoslotted photonic crystal waveguide cavities for single nanoparticle trapping and detection

机译:用于单个纳米粒子捕获和检测的纳米缝隙光子晶体波导腔的设计

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摘要

We design and numerically simulate an on-chip photonic device that integrates both optical manipulation and detection functionalities for a single nanoparticle or macromolecule. A unique combination of a photonic crystal waveguide cavity and a nanoslot structure leads to a approx1300 times enhancement of the optical gradient trapping force compared with a conventional waveguide trapping device. Numerical simulations indicate that the designed device is capable of stably trapping a single nanoparticle inside the nanoslot cavity, and thus provides an ideal platform for single particle detection and analysis using cavity-enhanced spectroscopic technologies.
机译:我们设计并数值模拟了一个芯片上的光子器件,该器件集成了单个纳米粒子或大分子的光学操纵和检测功能。光子晶体波导腔和纳米缝结构的独特组合与传统的波导捕获装置相比,可将光学梯度捕获力提高约1300倍。数值模拟表明,所设计的设备能够将单个纳米颗粒稳定地捕获在纳米槽腔内,从而为使用腔增强光谱技术进行单颗粒检测和分析提供了理想的平台。

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