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OPTICAL TRAPPING APPARATUS, METHODS AND APPLICATIONS USING PHOTONIC CRYSTAL RESONATORS

机译:使用光子晶体谐振器的光学陷波装置,方法和应用

摘要

A plurality of photonic crystal resonator optical trapping apparatuses and a plurality optical trapping methods using the plurality of photonic crystal resonator optical trapping apparatuses include located and formed over a substrate a photonic waveguide that is coupled (i.e., either separately coupled or integrally coupled) with a photonic crystal resonator. In a particular embodiment, the photonic waveguide and the photonic crystal resonator comprise a monocrystalline silicon (or other) photonic material absent any chemical functionalization. In another particular embodiment, the photonic waveguide and the photonic crystal resonator comprise a silicon nitride material which when actuating the photonic crystal resonator optical trapping apparatus with a 1064 nanometer resonant photonic radiation wavelength (or other resonant photonic radiation wavelength in a range from about 700 to about 1200 nanometers) provides no appreciable heating of an aqueous sample fluid that is analyzed by the photonic crystal resonator optical trapping apparatus.
机译:多个光子晶体谐振器光捕获装置和使用该多个光子晶体谐振器光捕获装置的多种光捕获方法包括将光子波导与基板耦合并形成,所述光子波导与基板耦合并形成在基板上方,所述光子波导与光子波导耦合。光子晶体谐振器。在特定实施例中,光子波导和光子晶体谐振器包括没有任何化学功能化的单晶硅(或其他)光子材料。在另一特定实施例中,光子波导和光子晶体谐振器包括氮化硅材料,当以1064纳米的谐振光子辐射波长(或其他谐振光子辐射波长在大约700至大约100nm)范围内激励光子晶体谐振器光捕获设备时,该氮化硅材料。大约1200纳米)不会提供由光子晶体谐振器光学捕获设备分析的含水样品流体的明显加热。

著录项

  • 公开/公告号EP2625556A2

    专利类型

  • 公开/公告日2013-08-14

    原文格式PDF

  • 申请/专利权人 CORNELL UNIVERSITY;

    申请/专利号EP20110831678

  • 发明设计人 CHEN YIH-FAN;ERICKSON DAVID;

    申请日2011-10-07

  • 分类号G02B6/12;G02F1/025;

  • 国家 EP

  • 入库时间 2022-08-21 16:29:06

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