3-color multiplex CARS spectrometer
    12.
    发明授权
    3-color multiplex CARS spectrometer 有权
    3色多重CARS光谱仪

    公开(公告)号:US08064053B2

    公开(公告)日:2011-11-22

    申请号:US12318373

    申请日:2008-12-29

    CPC classification number: G01J3/02 G01J3/0208 G01J3/0227 G01J3/0237 G01J3/4412

    Abstract: The present invention relates to a 3-color multiplex CARS spectrometer. In the 3-color multiplex CARS spectrometer, Raman resonance is achieved for multiple molecular vibrations of a sample by the combination of a short-wavelength pump beam generated by a broadband laser light source and a long-wavelength Stokes beam generated by a stable laser light source, and another short-wavelength laser beam having a narrow linewidth is then introduced separately to serve as a probe beam that interacts with the laser-driven sample, thereby generating CARS spectral signals whose wavelength components can be resolved. Accordingly, the 3-color multiplex CARS spectrometer solves problem of the conventional 2-color multiplex CARS spectroscopy in which the wavelength decomposition of CARS signals, necessary for high spectral resolution, is not possible with broadband pump light causing the CARS spectrum distortion.

    Abstract translation: 本发明涉及一种三色多重CARS光谱仪。 在三色多重CARS光谱仪中,通过将由宽带激光光源产生的短波长泵浦光束与由稳定的激光产生的长波长斯托克斯光束组合,实现了样品的多分子振动的拉曼共振 源和另一个具有窄线宽的短波长激光束然后被单独引入以用作与激光驱动样本相互作用的探测光束,从而产生其波长分量可以被解析的CARS光谱信号。 因此,三色多路CARS光谱仪解决了传统的双色多重CARS光谱的问题,其中对于高分辨率分辨率需要的CARS信号的波长分解在宽带泵浦光引起CARS频谱失真是不可能的。

    Hydrogen Water and Sterile Water Generation Device

    公开(公告)号:US20210403349A1

    公开(公告)日:2021-12-30

    申请号:US17288958

    申请日:2019-10-29

    Abstract: The present invention relates to a hydrogen water and sterile water-generating device that generates hydrogen water and sterile water by electrolysis. The hydrogen water and sterile water-generating device includes an electrolysis part that has at least two electrodes and electrolyzes water, a water introducing channel that introduces water into the electrolysis part, and a switch mechanism that switches the polarity of the electrodes between positive and negative, and hydrogen water and sterile water are generated in the same path by the switch mechanism switching the polarity of the electrodes between positive and negative during electrolysis.

    SPECTRALLY ENCODED COHERENT ANTI-STOKES RAMAN SCATTERING ENDOSCOPE
    15.
    发明申请
    SPECTRALLY ENCODED COHERENT ANTI-STOKES RAMAN SCATTERING ENDOSCOPE 有权
    光谱编码相干反射拉曼散射内窥镜

    公开(公告)号:US20100174145A1

    公开(公告)日:2010-07-08

    申请号:US12441684

    申请日:2008-11-27

    CPC classification number: A61B5/6852 A61B5/0066 G01N21/65 G01N2021/653

    Abstract: Disclosed is a spectrally encoded coherent anti-Stokes Raman scattering (CARS) endoscope that is capable of spatially encoding spectral dispersions of two light sources having frequency difference as much as a Raman shift and overlapping two laser beams on a position where a sample to be measured is placed, thereby acquiring a spatial distribution of CARS signals.

    Abstract translation: 公开了一种频谱编码的相干反斯托克斯拉曼散射(CARS)内窥镜,其能够空间编码具有与拉曼位移一样多的频率差异的两个光源的光谱色散,并且在待测样品的位置上重叠两个激光束 被放置,从而获得CARS信号的空间分布。

    Imaging Apparatus for IR Four-Wave Mixing Polarization Microscopy
    17.
    发明申请
    Imaging Apparatus for IR Four-Wave Mixing Polarization Microscopy 失效
    红外四波混频极化显微镜成像仪

    公开(公告)号:US20080304047A1

    公开(公告)日:2008-12-11

    申请号:US11861997

    申请日:2007-09-26

    CPC classification number: G02B21/0064 G01J3/433 G01N21/21 G01N21/23 G01N21/636

    Abstract: The present invention relates to an imaging apparatus for IR four-wave mixing polarization microscopy. The imaging apparatus comprises a pump beam source for generating an infrared pump beam; a probe beam source for generating a probe beam (search beam); a polarizer for linearly polarizing the pump beam and probe beam; a beam combiner which synchronizes temporally and overlaps spatially the polarized pump beam and probe beam on the same axis; a scanner for two-dimensionally scanning the combined pump beam and probe beam; an optical focusing system for focusing the scanned pump beam and probe beam on a local point of the sample; a collecting optical system for collecting the beam which is formed by that the focused beams are interacted with the sample and of which phase is anisotropically retarded by nonlinear birefringence of the sample and forming a parallel beam; a dichroic beam splitter for removing the infrared pump beam out of the parallel beam and splitting the probe beam of which phase is anisotropically retarded; a polarizing beam splitter for converting the split and ansotripically phase-retarded probe beam into linerly polarized beams having their axes perpendicular to each other; a photodetector for detecting an intensity of each of the converted linerly polarized beams; a polarization differential detector for detecting a polarization difference based on the detected intensities of the linerly polarized beams; and a data analyzer for acquiring the detected polarization difference signal and extracting a spectrospcopic information corresponding to the strength of molecular vibrational coherence of the sample.

    Abstract translation: 本发明涉及用于红外四波混频偏振显微镜的成像装置。 成像装置包括用于产生红外泵浦光束的泵浦光束源; 用于产生探测光束(探测光束)的探测光束源; 用于使泵浦光束和探测光束线性偏振的偏振器; 光束组合器在时间上同步并在同一轴线上空间上与偏振泵浦光束和探测光束重叠; 用于二维地扫描组合泵浦光束和探测光束的扫描仪; 用于将扫描的泵浦光束和探测光束聚焦在样品的局部点上的光学聚焦系统; 用于收集由聚焦光束与样品相互作用而形成的光束的收集光学系统,并且由该样品的非线性双折射各向异性地延迟并形成平行光束; 二向色光束分离器,用于将红外泵浦光束从平行光束中取出并分离出各向异性延迟的相位的探测光束; 偏振分束器,用于将分离和相位相位延迟的探针光束转换为具有彼此垂直的轴线的衬里偏振光束; 用于检测每个经转换的衬里偏振光束的强度的光电检测器; 偏振差分检测器,用于基于所检测的所述衬里偏振光束的强度来检测偏振差; 以及数据分析器,用于获取检测到的偏振差信号,并提取与样品的分子振动相干强度相对应的光谱信息。

    ELECTROLYSIS BATH FOR ACIDIC WATER AND METHOD FOR USING THE ACIDIC WATER
    18.
    发明申请
    ELECTROLYSIS BATH FOR ACIDIC WATER AND METHOD FOR USING THE ACIDIC WATER 有权
    酸性水电解浴和使用酸性水的方法

    公开(公告)号:US20150021171A1

    公开(公告)日:2015-01-22

    申请号:US14382841

    申请日:2013-08-19

    Abstract: An electrolytic bath for manufacturing acidic water capable of ensuring sufficient conductivity through wide surfaces of electrodes and stability of the surfaces of the electrodes to electrolyze tap water as well as RO water or DI water, especially, by coupling electrodes having the same polarity as one to apply a power source to the electrodes having the same polarity at the same time without using an additional catalytic agent or ion exchange resin, and use of the acidic water are provided. In particular, an electrolytic bath for manufacturing acidic water capable of obtaining a high concentration of acidic water by further forming mesh electrodes having a polarity different from the plurality of electrodes on a surface of an ion exchange membrane to widen an area of the electrodes and minimize a distance between the electrodes, thereby further facilitating a redox reaction, and use of the acidic water are provided.

    Abstract translation: 一种用于制造酸性水的电解槽,其能够通过电极的宽表面确保足够的导电性和电极表面的稳定性,以电解自来水以及RO水或去离子水,特别是通过将具有相同极性的电极耦合到 在不使用另外的催化剂或离子交换树脂的情况下同时将电源施加到具有相同极性的电极,并且提供使用酸性水。 特别是,通过在离子交换膜的表面上进一步形成极性不同于多个电极的极性的网眼电极,能够得到高浓度酸性水的酸性水的电解槽,以扩大电极的面积,并使电极的面积最小化 电极之间的距离,从而进一步促进氧化还原反应,并提供使用酸性水。

    Prediction method for monitoring performance of power plant instruments
    19.
    发明授权
    Prediction method for monitoring performance of power plant instruments 有权
    监测电厂仪表性能的预测方法

    公开(公告)号:US08781979B2

    公开(公告)日:2014-07-15

    申请号:US12574435

    申请日:2009-10-06

    CPC classification number: G06N99/005 G06K9/6269

    Abstract: Disclosed is a prediction method for monitoring performance of power plant instruments. The prediction method extracts a principal component of an instrument signal, obtains an optimized constant of a SVR model through a response surface methodology using data for optimization, and trains a model using training data. Therefore, compared to an existing Kernel regression method, accuracy for calculating a prediction value can be improved.

    Abstract translation: 公开了一种用于监测发电厂仪表性能的预测方法。 预测方法提取仪器信号的主成分,通过使用优化数据的响应面方法获得SVR模型的优化常数,并使用训练数据训练模型。 因此,与现有的内核回归方法相比,可以提高计算预测值的精度。

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