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    • 5. 发明公开
    • COMPACT CATADIOPTRIC SPECTROMETER
    • 紧凑型超临界光谱仪
    • EP2047220A2
    • 2009-04-15
    • EP07784900.8
    • 2007-07-20
    • Trinean NV
    • BOCKSTAELE, RonnyLUYSSAERT, BertNAESSENS, Kris
    • G01J3/18G01J3/02
    • G01J3/1804G01J3/02G01J3/0205G01J3/0208G01J3/0256G01J3/0264G01J3/0294G01J3/18
    • An optical characterisation system is described for characterising optical material. The system typically comprises a diffractive element (104), a detector (106) and an optical element (102). The optical element (102) thereby typically is adapted for receiving an illumination beam, which may be an illumination response of the material. The optical element (102) typically has a refractive surface for refractively collimating the illumination beam on the diffractive element (104) and a reflective surface for reflecting the diffracted illumination beam on the detector (106). The optical element (102) furthermore is adapted for cooperating with the diffractive element (104) and the detector (106) being positioned at a same side of the optical element (102) opposite to the receiving side for receiving the illumination beam.
    • 描述了用于表征光学材料的光学表征系统。 该系统通常包括衍射元件(104),检测器(106)和光学元件(102)。 光学元件(102)通常适于接收照明光束,该照明光束可以是该材料的照明响应。 光学元件(102)通常具有用于使衍射元件(104)上的照射束折射地准直的折射表面和用于将衍射的照射束反射到检测器(106)上的反射表面。 此外,光学元件(102)适于与衍射元件(104)协作并且检测器(106)位于光学元件(102)的与用于接收照明光束的接收侧相反的一侧。
    • 7. 发明公开
    • Optical spectrum analyzer
    • Optischer Spektrumanalysator
    • EP1693657A1
    • 2006-08-23
    • EP06001570.8
    • 2006-01-26
    • Anritsu Corporation
    • Takahashi, YoshifumiSaitoh, TakanoriNakamura, Kenichi
    • G01J3/28G01J3/18
    • G01J3/28G01J3/02G01J3/0202G01J3/021G01J3/0243G01J3/1804G01J2003/2866
    • An optical spectrum analyzer (20) measures to-be-measured light while carrying out calibration processing for correcting wavelength information of spectrum data of the to-be-measured light by a wavelength information correction device (56) through a storage device (58) based on the spectrum data of reference light that is obtained by causing the reference light whose wavelength is known to be incident on a tunable wavelength filter (25) from light incident devices (21, 22) at all times together with the to-be-measured light. Since the optical spectrum analyzer (20) can continuously measure the to-be-measured light in a wide wavelength range at high speed while maintaining high wavelength accuracy, it can continuously obtain the spectrum data of the to-be-measured light with high wavelength accuracy even if it is installed in a place in which an environment intensely changes.
    • 光谱分析仪(20)在通过存储装置(58)进行用波长信息校正装置(56)进行用于校正被测光的光谱数据的波长信息的校准处理时,测量被测光, 基于通过使已知波长已知的参考光与来自光入射装置(21,22)一起入射到可调谐波长滤波器(25)上的参考光的光谱数据, 测光。 由于光谱分析仪(20)能够在保持高波长精度的同时高速连续地测量宽波长范围内的待测光,因此可以连续地获得高波长被测光的光谱数据 即使将其安装在环境剧烈变化的地方也是如此。
    • 8. 发明公开
    • Monochromator and optical spectrum analyzer using the same
    • 单色器和光源单极化器
    • EP1308704A3
    • 2004-02-04
    • EP02024295.4
    • 2002-10-31
    • Ando Electric Co., Ltd.
    • Kaneko, TsutomuYamamoto, ToshikazuMori, Tohru
    • G01J3/18
    • G01J3/1804G01J3/12
    • A monochromator including: a concave mirror which converts incident light into parallel light and emits the parallel light, a plane diffraction grating for diffracting the parallel light emitted from the concave mirror, first reflection means which reflects first light diffracted by the plane diffraction grating and causes the diffracted light to enter the plane diffraction grating as second incident light, second reflection means which reflects second diffracted light and causes the reflected light to enter the plane diffraction grating as third incident light, and an exit slit disposed in the vicinity of a focal point such that third diffracted light is reflected by the first reflection means, to thereby enter the plane diffraction grating as fourth incident light and such that fourth diffracted light is converged at the focal point by the concave mirror, to thereby enable extraction of light having a specific wavelength.
    • 一种单色仪,包括:将入射光转换成平行光并发射平行光的凹面镜,用于衍射从凹面镜发射的平行光的平面衍射光栅;反射由平面衍射光栅衍射的第一光的第一反射装置, 作为第二入射光进入平面衍射光栅的衍射光,反射第二衍射光并使反射光进入平面衍射光栅作为第三入射光的第二反射装置,以及设置在焦点附近的出射狭缝 使得第三衍射光被第一反射装置反射,从而作为第四入射光进入平面衍射光栅,并且使得第四衍射光被凹面镜聚焦在焦点,从而能够提取具有特定 波长。