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    • 2. 发明申请
    • METHODS AND SYSTEMS FOR OPTIMIZING THE ALIGNMENT OF OPTICAL PACKAGES
    • 优化光学配件对准的方法和系统
    • WO2011156214A1
    • 2011-12-15
    • PCT/US2011/039006
    • 2011-06-03
    • CORNING INCORPORATEDGOLLIER, JacquesPIECH, Garrett A.RICKETTS, Daniel O.
    • GOLLIER, JacquesPIECH, Garrett A.RICKETTS, Daniel O.
    • G02B26/10G02F1/377
    • G02B26/101G02F1/377
    • A method for optimizing the alignment of an optical package includes directing a beam spot of a laser along a folded optical path and onto a waveguide portion of a wavelength conversion. The output intensity of the wavelength conversion device is measured as a position of an adjustable optical component is adjusted about a first scanning axis and a second scanning axis thereby traversing the beam spot along a first and second scan lines on the waveguide portion of the wavelength conversion device. The change in the output intensity of the wavelength conversion device is then determined based on the adjusted position of the adjustable optical component. The adjustable optical component is then positioned on the first scanning axis and the second scanning axis based on the determined changes in the output intensity of the wavelength conversion device such that the output intensity of the wavelength conversion device is maximized.
    • 用于优化光学封装的对准的方法包括将激光束的束斑沿着折叠的光路引导到波长转换的波导部分上。 测量波长转换装置的输出强度,因为可调节光学部件的位置围绕第一扫描轴和第二扫描轴进行调节,从而沿着波长转换的波导部分上的第一和第二扫描线遍及光束点 设备。 然后,基于可调节光学部件的调整位置来确定波长转换装置的输出强度的变化。 基于所确定的波长转换装置的输出强度的变化,使可调光学部件位于第一扫描轴和第二扫描轴上,使得波长转换装置的输出强度最大化。
    • 3. 发明申请
    • MULTI-VARIABLE CONTROL METHODS FOR OPTICAL PACKAGES
    • 用于光学包装的多变量控制方法
    • WO2010075017A3
    • 2011-03-10
    • PCT/US2009067818
    • 2009-12-14
    • CORNING INCGOLLIER JACQUESPIECH GARRETT APIKULA DRAGANRICKETTS DANIEL O
    • GOLLIER JACQUESPIECH GARRETT APIKULA DRAGANRICKETTS DANIEL O
    • H01S5/0683H01S5/022H01S5/0687
    • H01S5/0683G02F1/35G02F1/3775H01S5/0092H01S5/06256H01S5/0687
    • According to one embodiment of the present invention, an optical package comprises one or more semiconductor lasers coupled to a wavelength conversion device with adaptive optics. The optical package also comprises a package controller programmed to operate the semiconductor laser and the adaptive optics based on modulated feedback control signals supplied to the wavelength selective section of the semiconductor laser and the adaptive optics. The wavelength control signal supplied to the wavelength selective section of the semiconductor laser may be adjusted based on the modulated wavelength feedback control signal such that the response parameter of the wavelength conversion device is optimized. Similarly, the position control signals supplied to the adaptive optics may be adjusted based on the modulated feedback position control signals such that the response parameter of the wavelength conversion device is optimized.
    • 根据本发明的一个实施例,光学封装包括耦合到具有自适应光学器件的波长转换器件的一个或多个半导体激光器。 光学封装还包括编程为基于提供给半导体激光器和自适应光学器件的波长选择部分的调制反馈控制信号来操作半导体激光器和自适应光学器件的封装控制器。 提供给半导体激光器的波长选择部分的波长控制信号可以基于调制的波长反馈控制信号进行调整,使得波长转换器件的响应参数被优化。 类似地,可以基于调制的反馈位置控制信号来调整提供给自适应光学器件的位置控制信号,使得波长转换装置的响应参数被优化。
    • 5. 发明申请
    • OPTICAL PACKAGE HAVING DEFORMABLE MIRRORS FOR FOCUS COMPENSATION
    • 具有可变形镜的光学包装用于聚焦补偿
    • WO2009134407A1
    • 2009-11-05
    • PCT/US2009/002662
    • 2009-04-30
    • CORNING INCORPORATEDGOLLIER, JacquesPIECH, Garrett, A
    • GOLLIER, JacquesPIECH, Garrett, A
    • G02B26/12
    • G02B26/0825G02B26/0833G02F1/377G02F2001/3503
    • An optical package includes a semiconductor laser, an adjustable mirror and a wavelength conversion device comprising a waveguide portion. The semiconductor laser, adjustable mirror, and wavelength conversion device are oriented to form an optical pathway between an output of the semiconductor laser and an input of the wavelength conversion device. The beam of the semiconductor laser is directed along the optical pathway and onto the adjustable mirror where the beam is reflected by the adjustable mirror onto the waveguide portion of the wavelength conversion device. The adjustable mirror may also be either thermally or mechanically deformable such that, when the adjustable mirror is deformed, the path of the beam along the optical pathway is altered thereby focusing the beam on the waveguide portion of the wavelength conversion device. The adjustable mirror may be adjusted such that the beam of the semiconductor laser is positioned on the waveguide portion of the wavelength conversion device.
    • 光学封装包括半导体激光器,可调镜和包括波导部分的波长转换器件。 半导体激光器,可调镜和波长转换器件被定向成在半导体激光器的输出端与波长转换器件的输入端之间形成光路。 半导体激光束的光束沿着光学路径被引导到可调整反射镜上,其中光束被可调节反射镜反射到波长转换器件的波导部分上。 可调节反射镜也可以是热或机械可变形的,使得当可调节反射镜变形时,沿着光学路径的光束的路径被改变,从而将光束聚焦在波长转换装置的波导部分上。 可调节可调镜,使得半导体激光束的光束位于波长转换装置的波导部分上。
    • 8. 发明申请
    • METHOD FOR INCREASING A READ-OUT SPEED OF A CCD-DETECTOR
    • 增加CCD检测器读出速度的方法
    • WO2007019039A1
    • 2007-02-15
    • PCT/US2006/028745
    • 2006-07-25
    • CORNING INCORPORATEDPIECH, Garrett AWEBB, Michael B
    • PIECH, Garrett AWEBB, Michael B
    • G01J3/28G01N21/77
    • G01N21/7743G01J3/2803
    • A typical use of linear or two dimensional spectrometers is to expose the detector area (102) , and then shift the photo-electric charges out of the device in a serial fashion. If the illuminating signal (118) is spatially narrow relative to the size of the array, this will drive down the percent of the detector that is utilized, as only a relatively small number of pixels are used to detect the beam. The present invention proposes a method which capitalizes on this spatial under-utilization, and alters the clocking scheme to maximize the read-out speed of the pixels containing signal information. This type of clocking scheme raises the optical power saturation level of the spectrometer. Such an improvement in optical power handling is beneficial for spectrometer based detection of resonant waveguide grating biochemical binding, since in such systems the performance is frequently limited by spectrometer saturation.
    • 线性或二维光谱仪的典型用途是暴露检测器区域(102),然后将光电荷以串联方式移出设备。 如果照明信号(118)相对于阵列的尺寸在空间上窄,则这将驱动所使用的检测器的百分比,因为仅使用相对较少数量的像素来检测光束。 本发明提出了一种利用该空间利用不足的方法,并且改变了时钟方案以使包含信号信息的像素的读出速度最大化。 这种类型的时钟方案提高了光谱仪的光功率饱和水平。 光功率处理的这种改进对于谐振波导光栅生化结合的基于光谱仪的检测是有利的,因为在这样的系统中,性能常常受到光谱仪饱和度的限制。