Surface optical device apparatus, method of fabricating the same, and apparatus using the same
    31.
    发明授权
    Surface optical device apparatus, method of fabricating the same, and apparatus using the same 失效
    表面光学器件装置及其制造方法以及使用其的装置

    公开(公告)号:US06932516B2

    公开(公告)日:2005-08-23

    申请号:US09903709

    申请日:2001-07-13

    IPC分类号: G02B6/42 G02B6/36

    CPC分类号: G02B6/4249

    摘要: A surface optical device apparatus includes a surface optical device capable of emitting or receiving light through a surface thereof and a thick layer formed of a radiation-curable or electron-beam-curable material, such as a polymerizable resist. In the thick layer, a guide hole for inserting an end portion of a light-transmission member, such as an optical fiber, and a plastic optical fiber with a flat end face or a lens-shaped end face, therein is formed at a position corresponding to the surface of the surface optical device such that the surface optical device can be optically coupled to the light-transmission member inserted in the guide hole. The guide hole is formed in the thick layer by performing a patterning on the thick layer using photolithography to selectively harden the thick layer and developing the thick layer.

    摘要翻译: 表面光学器件装置包括能够通过其表面发射或接收光的表面光学器件以及由可聚合抗蚀剂等可辐射固化或电子束固化材料形成的厚层。 在厚层中,形成用于插入诸如光纤的光传输构件的端部的引导孔和具有平坦端面或透镜形端面的塑料光纤,位于 对应于表面光学装置的表面,使得表面光学装置可以光学耦合到插入导向孔中的光传输构件。 通过使用光刻法在厚层上进行图案化以选择性地硬化厚层并显影厚层,在厚层中形成引导孔。

    Optical waveguide, method of fabricating the waveguide, and optical interconnection device using the waveguide
    32.
    发明授权
    Optical waveguide, method of fabricating the waveguide, and optical interconnection device using the waveguide 失效
    光波导,制造波导的方法以及使用波导的光互连装置

    公开(公告)号:US06868214B1

    公开(公告)日:2005-03-15

    申请号:US09626740

    申请日:2000-07-26

    CPC分类号: G02B6/43 G02B6/138 G02B6/4214

    摘要: An optical waveguide includes a partial cylindrical portion, and a plurality of end portions. The partial cylindrical portion has an elongated profile, and is formed of a material transparent to light propagating along the partial cylindrical portion. The end portion has an approximately partial spherical profile, smoothly joins the partial cylindrical portion, and is formed of the same material as the material of the partial cylindrical portion, so that the light propagates along the partial cylindrical portion and the end portions while repeating total reflections at a boundary surface contouring the partial cylindrical portion and the end portions.

    摘要翻译: 光波导包括部分圆柱形部分和多个端部部分。 部分圆柱形部分具有细长轮廓,并且由对沿着部分圆柱形部分传播的光透明的材料形成。 端部具有近似部分的球形轮廓,平滑地接合部分圆柱形部分,并且由与部分圆柱形部分的材料相同的材料形成,使得光沿着部分圆柱形部分和端部部分传播,同时重复总计 在局部圆柱形部分和端部部分的边界表面上的反射。

    Surface emitting semiconductor laser, and its fabrication method
    33.
    发明授权
    Surface emitting semiconductor laser, and its fabrication method 失效
    表面发射半导体激光器及其制造方法

    公开(公告)号:US06639927B2

    公开(公告)日:2003-10-28

    申请号:US09749820

    申请日:2000-12-28

    IPC分类号: H01S506

    摘要: A surface emitting semiconductor laser includes an active region formed on a growth substrate, upper and lower mirror layers that sandwich the active region to construct a vertical cavity, a selective oxidization layer, and a current injecting unit for injecting a current into the active region. The selective oxidization layer is selectively oxidized and insulated and is provided on the side of the active region opposite to the side of the substrate. In this structure, a post portion is formed by removing semiconductor material formed on the substrate down to an uppermost or halfway level of the selective oxidization layer while the selective oxidization layer is used as an etch stop layer, and the selective oxidization layer acts as both a current confinement layer for the current injection and an insulating layer for the current injecting unit.

    摘要翻译: 表面发射半导体激光器包括形成在生长衬底上的有源区,夹持有源区以构成垂直腔的上镜和下镜层,选择性氧化层和用于将电流注入到有源区中的电流注入单元。 选择性氧化层被选择性地氧化和绝缘,并且设置在与衬底侧相对的有源区的一侧。 在这种结构中,通过将形成在衬底上的半导体材料移除到选择性氧化层的最上层或中间层,同时选择性氧化层用作蚀刻停止层,并且选择性氧化层用作两者 用于电流注入的电流限制层和用于电流注入单元的绝缘层。

    Compound semiconductor device and fabrication method of producing the
compound semiconductor device
    35.
    发明授权

    公开(公告)号:US5701325A

    公开(公告)日:1997-12-23

    申请号:US731682

    申请日:1996-10-16

    摘要: An improved compound semiconductor device, such as a distributed Bragg reflection type or distributed feedback type laser device, having regions with and regions without a diffraction grating. The device is fabricated without exhibiting surface irregularities by growing a first epitaxial layer on a semiconductor substrate, forming a fine uneven structure on the surface of the first epitaxial layer and growing a second epitaxial layer on the fine uneven structure. The fine uneven structure has a surface shape which exposes crystal orientations that facilitate subsequent epitaxial growth. In one embodiment, portions of the fine uneven structure are formed as a diffraction grating while other portions are formed insufficiently uneven to have a diffraction effect for any usable light wavelength. The fine uneven structure may suitably be shallow, have a short pitch or be provided at a slant to the light propagation direction, in order to preclude a diffraction effect.

    摘要翻译: 改进的化合物半导体器件,例如分布式布拉格反射型或分布式反射型激光器件,其具有区域和不具有衍射光栅的区域。 通过在半导体衬底上生长第一外延层,在第一外延层的表面上形成微小的不均匀结构,并在第一外延层上生长第二外延层,制造器件而不会出现表面凹凸。 精细的不均匀结构具有暴露促进随后的外延生长的晶体取向的表面形状。 在一个实施例中,微细凹凸结构的一部分形成为衍射光栅,而其它部分形成得不充分地不均匀以具有任何可用光波长的衍射效应。 为了防止衍射效应,微细凹凸结构可以适当地浅,具有短的间距或者以光传播方向倾斜地设置。

    Oscillation polarization mode selective semiconductor laser, modulation
method therefor and optical communication system using the same
    36.
    发明授权
    Oscillation polarization mode selective semiconductor laser, modulation method therefor and optical communication system using the same 失效
    振荡偏振模式选择半导体激光器,其调制方法和使用其的光通信系统

    公开(公告)号:US5648978A

    公开(公告)日:1997-07-15

    申请号:US579730

    申请日:1995-12-28

    申请人: Hajime Sakata

    发明人: Hajime Sakata

    摘要: A semiconductor laser includes a semiconductor laser structure having an active layer. The laser structure is designed such that light in both of two polarization modes can be excited therein. First and second reflectors are provided, and at least one of them is a distributed reflector which determines first and second reflection wavelengths for the two polarization modes. A coupling unit is provided for coupling the laser structure and the first and second reflectors for either of the light of the two polarization modes at first and second coupling wavelengths, which respectively coincide with the first and second reflection wavelengths. One of the light of the two polarization modes at the first and second reflection wavelengths is selectively propagated along a cavity comprised of the laser structure and the first and second reflectors by a control unit. Thus, light oscillates in one of the two polarization modes at the first and second reflection wavelengths.

    摘要翻译: 半导体激光器包括具有有源层的半导体激光器结构。 激光结构被设计成使得两种偏振模式中的光都可以被激发。 提供第一和第二反射器,并且它们中的至少一个是确定两种偏振模式的第一和第二反射波长的分布式反射器。 提供耦合单元,用于在第一和第二耦合波长处分别与第一和第二反射波长重合的两个偏振模式的光中的任一个耦合激光器结构和第一和第二反射器。 在第一和第二反射波长处的两个偏振模式的光之一通过控制单元沿着由激光器结构和第一和第二反射器组成的腔选择性地传播。 因此,光在第一和第二反射波长处以两种偏振模式之一振荡。

    Optical apparatus using wavelength selective photocoupler
    38.
    发明授权
    Optical apparatus using wavelength selective photocoupler 失效
    使用波长选择光电耦合器的光学设备

    公开(公告)号:US5140149A

    公开(公告)日:1992-08-18

    申请号:US796929

    申请日:1991-11-22

    摘要: The present invention relates to optical apparatus such as a photosensor, a semiconductor laser, an optical amplifier in which a wavelength selective photocoupler is used so as to couple two waveguides through a diffraction grating.A photosensor which is one of the optical apparatus according to the present invention comprises a substrate, a first waveguide layer formed on the substrate, a second waveguide layer formed on the first waveguide layer to be stacked in a direction of thickness and which has a guided mode difference from that of the first waveguide layer, a diffraction grating formed on an overlapping region of the guided modes of the first and second waveguide layers and which couples light components of a specific wavelength range of light propagating through the first waveguide layer to the second waveguide layer, a light absorption layer for absorbing at least some light components of the light components coupled to the second waveguide layer, and an electrode for converting the light components absorbed by the light absorption layer into an electrical signal and outputting the electrical signal.

    摘要翻译: 本发明涉及光传感器,半导体激光器,光放大器等光学装置,其中使用波长选择性光电耦合器,以便通过衍射光栅耦合两个波导。 作为本发明的光学装置之一的光电传感器包括基板,形成在基板上的第一波导层,形成在第一波导层上的第二波导层,以沿厚度方向堆叠并且具有引导 与第一波导层的模式差异,形成在第一和第二波导层的引导模式的重叠区域上并且将通过第一波导层传播的特定波长范围的光分量耦合到第二波导层的第二 波导层,用于吸收耦合到第二波导层的光分量的至少一些光分量的光吸收层,以及用于将由光吸收层吸收的光分量转换成电信号并输出​​电信号的电极。

    Liquid crystal light modulation device
    39.
    发明授权
    Liquid crystal light modulation device 失效
    液晶光调制装置

    公开(公告)号:US5013141A

    公开(公告)日:1991-05-07

    申请号:US391621

    申请日:1989-08-01

    申请人: Hajime Sakata

    发明人: Hajime Sakata

    IPC分类号: G02B5/18 G02F1/29

    摘要: A functional optical element has at least one diffraction grating in which first and second elements are alternately arranged. At least one of the first and second elements comprises an optically anisotropic substance and the adjacent elements are substantially different from each other. This diffraction grating is so disposed that the arrayed surface of the diffraction grating is located in the path of the incident light beam. The functional optical device is characterized in that an incident light beam having an arbitrary polarization characteristic is functioned as a plurality of light beams which are polarized in the different directions, so that at least part of the incident light beam is subjected to the diffraction effect. The optical condition of at least one of the first and second elements may be varied by a control device.

    摘要翻译: 功能性光学元件具有至少一个衍射光栅,其中第一和第二元件交替布置。 第一和第二元件中的至少一个包括光学各向异性物质,并且相邻元件彼此基本上不同。 该衍射光栅被设置成使得衍射光栅的阵列表面位于入射光束的路径中。 功能光学元件的特征在于,具有任意偏光特性的入射光束作为在不同方向上被偏振的多个光束而发挥作用,使至少一部分入射光束受到衍射效应。 第一和第二元件中的至少一个的光学条件可以通过控制装置来改变。