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    • 3. 发明授权
    • Optical information storing apparatus and method for production of
optical deflector
    • 光学信息存储装置及其制造方法
    • US5191624A
    • 1993-03-02
    • US762935
    • 1991-09-19
    • Kenchi ItoKazumi KawamotoNaoya KandaYasuo HiraHidemi SatoAtsuko FukushimaMasataka ShibaAkira InagakiMinoru Yoshida
    • Kenchi ItoKazumi KawamotoNaoya KandaYasuo HiraHidemi SatoAtsuko FukushimaMasataka ShibaAkira InagakiMinoru Yoshida
    • G02B6/12G02F1/335G11B7/12
    • G02B6/12004G02F1/335G11B7/1245
    • An optical waveguide is comprised of an optical substrate and an optical thin-film optical waveguide layer and formed such that ##EQU1## where .theta. is an output angle, n.sub.o1 is an ordinary refractive index of the optical substrate for an ordinary beam, n.sub.e1 is an extraordinary refractive index of the optical substrate for an extraordinary beam, n.sub.o2 is an ordinary refractive index of the optical thin-film optical waveguide layer for the ordinary beam and n.sub.e2 is an extraordinary refractive index of the optical thin-film optical waveguide layer for the extraordinary beam, and an electrode for generating a surface acoustic wave for diffracting light is formed on the optical waveguide to construct a collinear optical deflector. A method for production of the optical thin-film optical waveguide layer is exemplified wherein a target made of tantalic lilthium niobate or tantalic lithium niobate magnesium and an optical substrate made of lithium tantalate are prepared and an optical thin-film optical waveguide layer having a composition of tantalic lithium niobate or tantalic lithium niobate magnesium is formed on the optical substrate through an ion beam sputtering process into which oxygen can be introduced. Proton substitutes for part of an element constituting the optical thin-film optical waveguide layer.
    • 光波导包括光学基板和光学薄膜光波导层,并且被形成为使得θ是输出角度的θIMA1是普通光束的光学基板的普通折射率,ne1是 用于非常光束的光学基板的非常折射率,no2是普通光束的光学薄膜光波导层的普通折射率,ne2是非常优异的光学薄膜光波导层的非常折射率 并且在光波导上形成用于产生用于衍射光的表面声波的电极,以构成共线的光学偏转器。 制备光学薄膜光波导层的方法被制备,其中制备由钽酸铌酸锂或钽酸铌镁制成的靶和由钽酸锂制成的光学衬底,并且制备具有组成的光学薄膜光波导层 通过可以引入氧气的离子束溅射工艺在光学基板上形成铌酸锂或钽酸铌酸镁。 质子代替构成光学薄膜光波导层的元件的一部分。
    • 4. 发明授权
    • Second harmonic generator and method of fabrication thereof
    • 二次谐波发生器及其制造方法
    • US5274727A
    • 1993-12-28
    • US879361
    • 1992-05-07
    • Kenchi ItoKazumi KawamotoHiroshi MomijiYasuo HiraHidemi SatoAtsuko Fukushima
    • Kenchi ItoKazumi KawamotoHiroshi MomijiYasuo HiraHidemi SatoAtsuko Fukushima
    • G02F1/377G02F1/37
    • G02F1/3775
    • A second harmonic generator having a wide acceptance of bandwidth of temperature and/or a high conversion efficiency and a method of fabrication thereof are disclosed. An equidistant arrangement of pole-inverted grating having a rectangular sectional profile and the direction of spontaneous polarization opposite to that of a substrate within an optical waveguide has been known to produce a high conversion efficiency of the second harmonic generator A second harmonic generator having such a structure, which has so far been impossible to fabricate, is formed utilizing the liquid-phase epitaxial method and the ion-implanting method. Further, the substrate and the optical waveguide are formed of the same type of material. The temperature coefficient of the refractive index in the direction perpendicular to the substrate surface is rendered substantially equal to that of the optical waveguide, thereby improving the acceptance of bandwidth of temperature and making possible practical applications of the second harmonic generator.
    • 公开了具有对温度带宽的广泛接受和/或高转换效率的二次谐波发生器及其制造方法。 已知具有矩形截面轮廓和与光波导内的衬底相反的自发极化方向的等反转光栅的等距布置产生二次谐波发生器A的高转换效率二次谐波发生器具有这样的 使用液相外延法和离子注入法形成迄今为止不可能制造的结构。 此外,基板和光波导由相同类型的材料形成。 使与基板表面垂直的方向的折射率的温度系数基本上等于光波导的温度系数,从而提高了温度带宽的接受性,并且可以实现二次谐波发生器的实际应用。
    • 7. 发明授权
    • Surface acoustic waveguide device and manufacturing method
    • 表面声波导装置及其制造方法
    • US5187756A
    • 1993-02-16
    • US758608
    • 1991-09-12
    • Masataka ShibaAkira InagakiMinoru YoshidaKenchi ItoKazumi Kawamoto
    • Masataka ShibaAkira InagakiMinoru YoshidaKenchi ItoKazumi Kawamoto
    • H03H9/25G02F1/125
    • G02F1/125
    • The present invention relates to a surface acoustic wave element comprising a substrate, an optical waveguide layer formed on the aforesaid substrate to guide laser light from a laser light source, a surface acoustic wave portion for deflecting or modulating the laser light traveling through the aforesaid optical waveguide layer, a comb-shaped SAW electrode provided on the aforesaid optical waveguide layer to cause the aforesaid surface acoustic wave portion to generate surface acoustic wave, and a terminal provided on the aforesaid optical waveguide layer and connected to the aforesaid SAW electrode to apply a high-frequency alternating voltage thereto, wherein a protection cover is bonded by a viscoelastic adhesive having a refractive index smaller than that of the aforesaid optical waveguide layer to cover the aforesaid SAW electrode and surface acoustic wave portion with air space in such a manner that the aforesaid terminal is positioned outside thereof, and the manufacturing method of the surface acoustic wave element.
    • 本发明涉及一种弹性表面波元件,包括基板,形成在上述基板上的用于引导来自激光光源的激光的光波导层,用于偏转或调制通过前述光学器件行进的激光的表面声波部分 波导层,设置在上述光波导层上的梳形SAW电极,使上述声表面波部分产生声表面波;以及端子,设置在上述光波导层上,并与上述SAW电极连接, 高频交流电压,其中保护盖通过具有比上述光波导层的折射率小的折射率的粘弹性粘合剂粘结,以覆盖上述SAW电极和具有空气空间的表面声波部分,使得 上述端子位于其外侧, 声表面波元件。