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    • 16. 发明授权
    • MEMS-based pellicle beamsplitter
    • 基于MEMS的防护薄膜分束器
    • US08767301B2
    • 2014-07-01
    • US12864214
    • 2008-01-31
    • Michael Renne Ty TanShih-Yuan (SY) WangWei Wu
    • Michael Renne Ty TanShih-Yuan (SY) WangWei Wu
    • G02B1/10G02B27/14
    • G02B27/142G02B6/125G02B6/4214G02B6/43G02B27/14
    • A method of forming a non-polarizing pellicle beamsplitter having a desired power-tap ratio. The method includes the operation of forming a base layer having a base refractive index on a substrate and arranging a plurality of alternating layers having relatively high and low indexes of refraction respectively over the base layer. The thickness of each of the high index and low index layers is selected to substantially eliminate polarization of the optical beam. The method further includes the operation of removing a selected area of the substrate to create an optical pathway comprised of both the base layer and the plurality of alternating layers, and where the optical pathway is configured to transmit and reflect a selected amount of light in the optical beam.
    • 一种形成具有期望的电力抽头比的非偏振薄膜分束器的方法。 该方法包括在基底上形成具有基底折射率的基底层的操作,并且在基底层上分别布置具有相对较高和较低折射率的多个交替层。 选择每个高折射率层和低折射率层的厚度以基本上消除光束的偏振。 该方法还包括去除衬底的选定区域以创建由基底层和多个交替层两者组成的光学路径的操作,并且其中光学路径被配置为透射和反射所选择的光量 光束。
    • 18. 发明授权
    • Vibrating tip surface enhanced Raman spectroscopy
    • 振动尖端表面增强拉曼光谱
    • US08243270B2
    • 2012-08-14
    • US12697156
    • 2010-01-29
    • Huei Pei KuoMichael J. StukeMin HuFung Suong OuShih-Yuan (SY) WangAlexandre M. BratkovskiWei WuZhiyong Li
    • Huei Pei KuoMichael J. StukeMin HuFung Suong OuShih-Yuan (SY) WangAlexandre M. BratkovskiWei WuZhiyong Li
    • G01J3/44
    • G01J3/44
    • A vibrating tip surface enhanced Raman spectroscopy (SERS) apparatus, system and method employ a nano-needle configured to vibrate. The apparatus includes the nano-needle with a substantially sharp tip at a free end opposite an end attached to a substrate. The tip is configured to adsorb an analyte. The apparatus further includes a vibration source configured to provide an alternating current (AC) electric field that induces a vibration of the free end and the tip of the nano-needle. Vibration of the nano-needle under the influence of the AC electric field facilitates detection of a Raman scattering signal from the analyte adsorbed on the nano-needle tip. The system further includes a synchronous detector configured to be gated cooperatively with the vibration of the nano-needle. The method includes inducing the vibration, illuminating the vibrating tip to produce a Raman signal, and detecting the Raman signal using the detector.
    • 振动尖端表面增强拉曼光谱(SERS)装置,系统和方法采用配置为振动的纳米针。 该装置包括在与连接到基底的端相对的自由端处具有基本尖锐的尖端的纳米针。 尖端构造成吸附分析物。 该装置还包括一个被配置为提供交流(AC)电场的振动源,其引起自由端和纳米针的尖端的振动。 在AC电场的影响下,纳米针的振动有助于检测吸附在纳米针尖上的分析物的拉曼散射信号。 该系统还包括配置为与纳米针的振动协同地选通的同步检测器。 该方法包括引起振动,照亮振动尖端以产生拉曼信号,并使用检测器检测拉曼信号。