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    • 3. 发明授权
    • Device for focusing light through an optical component
    • 用于通过光学部件聚焦光的装置
    • US5850493A
    • 1998-12-15
    • US896540
    • 1997-07-18
    • Yihao Cheng
    • Yihao Cheng
    • G02B6/26G02B6/28G02B6/32G02B6/34
    • G02B6/2746G02B6/2848G02B6/32G02B6/2937
    • An optical device comprising an optical element optically coupled with at least two lenses, each lens having at least a substantially collimating end, the at least substantially collimating ends being inwardly facing one another and each lens having a substantially focusing end, the substantially focusing ends being outwardly facing, and at least one waveguide disposed adjacent and spaced from the each outwardly facing end for coupling light to or from an adjacent lens, the waveguides each having an end that is separated from its adjacent lens by an optical distance of approximately d1, an optical distance between the two collimating end faces of the at least two lenses being d2, where d1 is approximately equal to one half d2.
    • 一种光学装置,包括与至少两个透镜光学耦合的光学元件,每个透镜具有至少基本上准直的端部,所述至少基本上准直的端部彼此面对,并且每个透镜具有基本上聚焦的端部, 并且至少一个波导设置成与每个面向外的端部相邻并间隔开,用于将光耦合到相邻透镜或从相邻透镜耦合光,每个波导具有与其相邻透镜分开大约d1的光学距离的端部, 至少两个透镜的两个准直端面之间的光学距离为d2,其中d1近似等于一半d2。
    • 4. 发明授权
    • Multi-port optical device
    • 多端口光学设备
    • US5799121A
    • 1998-08-25
    • US800061
    • 1997-02-14
    • Gary S. DuckYihao Cheng
    • Gary S. DuckYihao Cheng
    • G02B13/00G02B3/00G02B6/34G02B27/10G02B6/26G02B6/32
    • G02B6/2937
    • An optical device is provided having an input and an output terminal spaced equidistant from an optical axis of a graded index lens. An at least partially reflective surface is disposed spaced but adjacent from another end face of the graded index lens. The optical path length from the input or output terminal to a first end face of the lens is equal to the optical path length from the other end face of the lens to the at least partially reflective surface. The graded index lens has a length that collimates light launched from the input terminal to the at least partially reflective surface. Moving the input an output terminals toward or away from one another changes the angle at which light exits the other end face of the graded index lens, and thus changes the angle at which light is incident upon the at least partially reflecting surface. Conveniently, if the at least partially reflecting surface is a WDM interference filter, tunability of the filter is achieved by moving the input an output terminals toward or away from one another.
    • 提供了具有与渐变折射率透镜的光轴等距离的输入和输出端子的光学装置。 至少部分反射的表面设置成间隔开,但与渐变折射率透镜的另一个端面相邻。 从透镜的输入或输出端子到第一端面的光路长度等于从透镜的另一个端面到至少部分反射表面的光路长度。 渐变折射率透镜具有将从输入端子发射的光准直到至少部分反射表面的长度。 将输入端朝向或远离移动输入端改变了光从渐变折射率透镜的另一端面离开的角度,从而改变光入射到至少部分反射表面上的角度。 方便地,如果至少部分反射表面是WDM干涉滤光器,则通过使输入端彼此朝向或远离移动来实现滤波器的可调性。
    • 8. 发明授权
    • Compact optical switch
    • 紧凑型光开关
    • US5629993A
    • 1997-05-13
    • US520702
    • 1995-08-29
    • John O. Smiley
    • John O. Smiley
    • G02B6/35G02B6/26G02B6/42
    • G02B6/3504G02B6/3536G02B6/3558G02B6/358
    • An optical switch has a stepping motor with a fiber faceplate on which are mounted end portions of output optical fibers terminating in GRIN lenses. The end portions are arranged along a pitch circle. The faceplate is spaced from the stepping motor and the diameter of the pitch circle is smaller than the diameter of the stepping motor, the output fibers diverging from the faceplate towards the motor and beyond in a space-saving arrangement. The stepping motor drives a movable arm with attached end portion of an input optical fiber, also with a GRIN lens, into one of a plurality switching positions. The connection between the fibers and the lenses and also the relative axial arrangement of the paired lenses in the switching positions is offset to reduce or minimize the reflection of light transmitted from the input fiber to the output fiber, back to the input fiber.
    • 光开关具有带有光纤面板的步进电机,其上安装有端接在GRIN透镜中的输出光纤的端部。 端部沿着节圆排列。 面板与步进电机间隔开,节圆的直径小于步进电机的直径,输出光纤以节省空间的方式从面板向电机发散。 步进电机将具有GRIN透镜的输入光纤的附接端部的可动臂驱动到多个开关位置之一。 光纤和透镜之间的连接以及成对的透镜在切换位置中的相对轴向布置偏移以减少或最小化从输入光纤传输到输出光纤的光的反射回到输入光纤。
    • 9. 发明授权
    • Bandpass optical filter
    • 带通滤光片
    • US5615289A
    • 1997-03-25
    • US568650
    • 1995-12-07
    • Gary S. DuckDavid H. CushingStephen J. Mihailov
    • Gary S. DuckDavid H. CushingStephen J. Mihailov
    • G02B27/46G02B6/12G02B6/34G02B6/28
    • G02B6/29356G02B6/02052G02B2006/12107G02B2006/12109
    • A bandpass optical filter is provided that is formed within an optical fiber in the form of a Bragg grating. The grating includes multiple Fabry Perot cavities disposed along the waveguide. Each of the cavities includes a pair of reflectors. Each reflector comprises alternating high-low index regions within the waveguide, each region having a thickness of one quarter-wave at a bandpass wavelength, each alternate region being of a different index of refraction than an adjacent region. A multiple odd quarter-wave or quarter-wave high or low index region is sandwiched between each pair of reflectors. The number of high/low regions within a reflector is selected in accordance with the refractive index difference between two alternate adjacent regions.
    • 提供一种形成在布拉格光栅形式的光纤内的带通滤光器。 光栅包括沿着波导设置的多个Fabry P + E,acu e + EE r + E,cir o + EE t空腔。 每个空腔包括一对反射器。 每个反射器包括波导内的交替的高 - 低折射率区域,每个区域在带通波长处具有四分之一波长的厚度,每个替代区域具有与相邻区域不同的折射率。 多个奇数四分之一波或四分之一波高或低折射率区域夹在每对反射器之间。 根据两个交替相邻区域之间的折射率差来选择反射器内的高/低区域的数量。
    • 10. 发明授权
    • Reflective optical non-reciprocal devices
    • 反光光学非互易器件
    • US5471340A
    • 1995-11-28
    • US178838
    • 1994-01-07
    • Yihao ChengGary S. Duck
    • Yihao ChengGary S. Duck
    • G02B27/28G02F1/09G02B5/30G02F1/095
    • G02B27/283G02F1/093
    • In order to reduce the number of components and avoid relatively long optical lengths, a non-reciprocal device such as a circulator comprises a plurality of ports at one end of the device, a mirror at an opposite end of the device, and a series of optical elements disposed between the ports and the mirror. The optical elements include a first element which spatially separates first and second orthogonally-polarized components of a light beam leaving one of said plurality of ports and passing through the device in a forward direction, and recombines the first and second components as they pass through the device in a reverse direction after reflection. A second optical element, disposed between the separating and recombining element and the mirror, selectively displaces and rotates the light beam components such that the recombined light beam is coupled to a different one of the plurality of ports.
    • 为了减少部件的数量并避免相对长的光学长度,诸如循环器的不可逆设备包括在设备的一端的多个端口,在设备的相对端的反射镜,以及一系列 设置在端口和反射镜之间的光学元件。 光学元件包括第一元件,其空间上分离出离开所述多个端口中的一个的光束的第一和第二正交极化分量并沿正向方向穿过该器件,并且当第一和第二元件通过 器件反射后反方向。 设置在分离元件和复合元件与反射镜之间的第二光学元件选择性地移动和旋转光束分量,使得复合光束耦合到多个端口中的不同端口。