The Modern Way of Refractive Index Measurement of Optical Glass at SCHOTT

被引:3
|
作者
Rupp, Fabian [1 ]
Jedamzik, Ralf [1 ]
Bartelmess, Lothar [1 ]
Petzold, Uwe [1 ]
机构
[1] Schott AG, Hattenbergstr 10, D-55122 Mainz, Germany
来源
OPTICAL FABRICATION, TESTING, AND METROLOGY VII | 2021年 / 11873卷
关键词
SCHOTT; optical glass; refractive index; dispersion; V-block; spectral goniometer;
D O I
10.1117/12.2597023
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The refractive index is the most important property of optical glass. Therefore, refractive index measurement is a key characterization method also for process control. The requirements for refractive index control demand a fast and accurate measurement method for production control and a very high accurate measurement method for tightest requirements. For refractive index measurement two different measurement setups are common: the V-block refractometer for economic refractive index control up to the fifths digit and the spectral goniometer Ultraviolet to infrared Refractive Index measurement System (URIS) for high precision index measurement over a broad wavelength range 185 nm to 2.325 nm up to the sixth digit. Providing Sellmeier dispersion equation data for individual measurements enables accurate interpolation of index data for arbitrary wavelengths for high precision applications. To cope with specific production requirements and the required high reliability of the measurements SCHOTT develops its own measurement setups. Both, the V-block system and the high precision spectral goniometer have been updated in recent time. SCHOTT is also participating in the standardization of refractive index measurement methods for the optical industry. In this paper the current status of refractive index measurement of optical glasses at SCHOTT is presented.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Refractive Index of Aluminophosphosilicate Glass in Optical Fibers near AlPO4 Join
    Likhachev, Mikhail E.
    Zaushitsyna, Tatiana S.
    Agakhanova, Vitaliya A.
    Aleshkina, Svetlana S.
    Bubnov, Mikhail M.
    Lobanov, Alexey S.
    Oleinik, Denis I.
    Lipatov, Denis S.
    PHOTONICS, 2025, 12 (01)
  • [42] Optical Detection of Motion of an Object with a Refractive Index Coinciding with the Refractive Index of the Surroundings
    N. N. Rozanov
    Optics and Spectroscopy, 2004, 96 : 938 - 939
  • [43] Optical detection of motion of an object with a refractive index coinciding with the refractive index of the surroundings
    Rozanov, NN
    OPTICS AND SPECTROSCOPY, 2004, 96 (06) : 938 - 939
  • [44] Prism refractive index measurement at INRiM
    Astrua, M.
    Pisani, M.
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2009, 20 (09)
  • [45] On reflectometric measurement of a refractive index of milk
    Jääskelainen, AJ
    Peiponen, KE
    Räty, JA
    JOURNAL OF DAIRY SCIENCE, 2001, 84 (01) : 38 - 43
  • [46] Measurement of corneal surface refractive index
    Pierscionek, BK
    Green, R
    OPTO-IRELAND 2005: OPTICAL SENSING AND SPECTROSCOPY, 2005, 5826 : 500 - 511
  • [47] A new method for measuring the refractive index of glass
    Zhang, Wei
    Su, Xian-yuan
    Yang, Yan-min
    Mi, Chao
    2013 INTERNATIONAL CONFERENCE ON OPTICAL INSTRUMENTS AND TECHNOLOGY: OPTICAL SYSTEMS AND MODERN OPTOELECTRONIC INSTRUMENTS, 2013, 9042
  • [48] The effect of annealing on the variation of glass refractive index
    Rushton, K. P.
    Coulson, S. A.
    Newton, A. W. N.
    Curran, J. M.
    FORENSIC SCIENCE INTERNATIONAL, 2011, 209 (1-3) : 102 - 107
  • [49] ACCURACY OF THE DOUBLE VARIATION TECHNIQUE OF REFRACTIVE-INDEX MEASUREMENT
    VERKOUTEREN, JR
    STEEL, EB
    WINDSOR, ES
    PHELPS, JM
    JOURNAL OF RESEARCH OF THE NATIONAL INSTITUTE OF STANDARDS AND TECHNOLOGY, 1992, 97 (06) : 693 - 705
  • [50] Simultaneous, remote, and interferometric measurement of thickness and group refractive index
    Murphy, DF
    Flavin, DA
    FIBER OPTIC SENSOR TECHNOLOGY AND APPLICATIONS, 1999, 3860 : 118 - 126