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    • 25. 发明专利
    • OPTICAL RECORDING MATERIAL AND PHOTOGRAPHIC SENSITIVE BODY USING SAME
    • JPH0284640A
    • 1990-03-26
    • JP13760489
    • 1989-05-31
    • TOPPAN PRINTING CO LTDFUJIHIRA MASAMICHI
    • FUJIHIRA MASAMICHISAKOMURA MASARUKAMEI TAKAHIROKATO YUTAKA
    • G03C1/73G11B7/24G11B7/243G11B7/244
    • PURPOSE:To perform the amplification of the subject material due to quenching function by means of isotropic amplification, and to enable the recording with high density by making a molecule generating the fluorescence exhibit a function of quenching fluorescence by irradiating a visual light or UV rays in the presence of a reactive gas. CONSTITUTION:A thin film 4 is formed on a substrate 1 which does not generate the fluorescence and is composed of an inorg. material such as quartz and alumina, etc., or an org. material such as a synthetic film by applying a suitable mixture of the molecule 2 and a thin film forming molecule 3 on the substrate. When the visual light and the UV rays are partially and selectively irradiate don the obtd. optical recording material in the presence of the reactive gas, the molecule 2 occurs a chemical reaction in the peculiarly functional part of the molecule resulted in making the molecule 2'. Subsequently, when the visual light and the UV rays are irradiate don the optical recording material in the state of a isolating the reactive gas and the thin film 4 for reading out a record, the chemical change of the molecule 2 is suppressed. Thus, the recording with the high density of the material which has isotropic amplification process, enables, and as the reading-out of the record is performed by detecting the fluorescence brought from the recording material itself, the reading out of the record is simplified and certainly performed.
    • 28. 发明专利
    • OBSERVING DEVICE FOR FINE SURFACE
    • JPH0599641A
    • 1993-04-23
    • JP25681791
    • 1991-10-03
    • SEIKO INSTR INCFUJIHIRA MASAMICHI
    • FUJIHIRA MASAMICHIATAKA TATSUAKISAKUHARA TOSHIHIKO
    • G01B11/30G01Q20/02G01Q20/04G01Q60/18G02B6/00G11B7/005G11B11/00
    • PURPOSE:To measure the distribution of fine transmission factors or refraction factors within a sample surface by providing means for detecting a signal for maintaining the distance between the sample and the end portion of optical fiber at a predetermined value and for holding the signal constant. CONSTITUTION:A sample 2 located on a prism 1 is illuminated by a light source 8 and an optical system 9 in such a manner that light of a specific wavelength is incident on the sample 2 or the upper surface of the prism 1 at the angle of total reflection and the intensity of evanescent light generated from the surface of the sample 2 is detected by optical fiber 3 and a photometric system 10. A signal for setting the distance between the end portion of the fiber 3 and the surface of the sample 2 at a predetermined value is detected by a Z-axis signal detecting system 12 and a Z-axis moving mechanism 6 is controlled by a Z-axis control mechanism 7 in such a manner that the signal is held constant. While the Z-axis is controlled, an X-Y-axes moving mechanism 4 is controlled by an X-Y-axes control mechanism 5 to scan an X-Y plane. The mechanism 5, the detecting system 12, the mechanism 7, the light source 8 and the photometric system 10 are controlled by a computer 11. Thereby the distribution of transmission factors or refraction factors within the X-Y plane of the sample can be measured at resolution of below the wavelength.