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    • 3. 发明申请
    • Laser crystal evaluating system
    • 激光晶体评估系统
    • US20060092402A1
    • 2006-05-04
    • US11205340
    • 2005-08-17
    • Yoshiaki GotoMasayuki MomiuchiTaizo Eno
    • Yoshiaki GotoMasayuki MomiuchiTaizo Eno
    • G01N21/00
    • G01N21/958G01N2021/637
    • A laser crystal evaluating system, comprising a light emitting source for emitting an excitation light, a laser crystal support base for supporting a laser crystal, a photodetection unit for receiving a laser beam emitted from the laser crystal, a moving device for relatively moving the light emitting source and the laser crystal in parallel to an end surface of the laser crystal, and an arithmetic operation control device for acquiring an amount of relative movement from the moving device and a result of photodetection from the photodetection unit, wherein a position in the end surface of the laser crystal where the excitation light enters is moved by the moving device, and the arithmetic operation control device obtains output distribution within the end surface of the laser crystal based on the incident position of the excitation light and on the result of photodetection.
    • 一种激光晶体评估系统,包括用于发射激发光的发光源,用于支撑激光晶体的激光晶体支撑基座,用于接收从激光晶体发射的激光束的光电检测单元,用于相对移动光的移动装置 发光源和激光晶体平行于激光晶体的端面;以及算术运算控制装置,用于获取来自移动装置的相对移动量和来自光电检测单元的光检测结果,其中,位置在末端 激发光进入的激光晶体的表面由移动装置移动,并且算术运算控制装置基于激发光的入射位置和光电检测结果获得激光晶体的端面内的输出分布。
    • 5. 发明授权
    • Method and apparatus for spectrometric measurement of particulate
surfaces
    • 颗粒表面光谱测量方法和装置
    • US5469255A
    • 1995-11-21
    • US186991
    • 1994-01-27
    • Kenji KamadaKeiji SasakiNoboru KitamuraHiroshi Masuhara
    • Kenji KamadaKeiji SasakiNoboru KitamuraHiroshi Masuhara
    • G01N15/00G01N21/63G01J3/42G01J3/443
    • G01N21/636G01N15/00G01N2021/637
    • A method of spectrometry is disclosed for measuring transient absorbance and transient absorption spectrum of a substance to be measured at interfaces in liquid phase of particulates containing a fluorescent pigment and the substance to be measured by the utilization of optical resonance phenomenon. An apparatus for carrying out the method is also disclosed and comprises: (a) a pulse laser oscillator for exciting the fluorescent pigment and the substance to be measured, respectively; (b) an optical delay device for causing delay of any one of pulse laser beams of two kinds of wavelengths generated by the pulse laser oscillator; (c) a microscope system for condensing laser beams generated by the pulse laser oscillator and irradiating the condensed beams to the sample; and (d) a detector for detecting light emission of the sample. According to the method of the present invention, it is possible to measure transient absorbance and transient absorption spectrum at a high sensitivity even when particulates containing the substance to be measured in liquid phase are present.
    • 公开了一种用于测量在含有荧光颜料的微粒的液相界面处的物质的瞬时吸光度和瞬时吸收光谱的方法,以及通过利用光学共振现象来测量的物质。 还公开了一种用于实施该方法的装置,包括:(a)分别激发荧光颜料和待测物质的脉冲激光振荡器; (b)用于使由脉冲激光振荡器产生的两种波长的脉冲激光束中的任一种延迟的光延迟装置; (c)用于聚集由脉冲激光振荡器产生的激光束并将聚光束照射到样品的显微镜系统; 和(d)用于检测样品的光发射的检测器。 根据本发明的方法,即使存在含有在液相中待测物质的微粒,也能以高灵敏度测定瞬时吸光度和瞬时吸收光谱。