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    • 5. 发明申请
    • TOMOGRAPHIC WAVEFRONT ANALYSIS SYSTEM AND METHOD OF MAPPING AN OPTICAL SYSTEM
    • 图像波形分析系统和映射光学系统的方法
    • WO2002075367A2
    • 2002-09-26
    • PCT/US2002/007573
    • 2002-03-14
    • WAVEFRONT SCIENCES, INC.NEAL, Daniel, R.COPLAND, Richard, J.
    • NEAL, Daniel, R.COPLAND, Richard, J.
    • G02B
    • G01M11/0264A61B3/1015G01J9/00
    • A method of measuring aberrations of a three-dimensional structure of an optical system, such as an eye, includes creating a plurality of light beams, optically imaging the light beams and projecting the light beams onto different locations in an optical system, receiving scattered light from each of the locations, and detecting individual wavefronts of the scattered light. The plurality of light beams may be created and projected simultaneously or sequentially. A system for measuring aberrations of a three-dimensional structure of an optical system includes a light source creating a plurality of light beams, an optical imaging system optically imaging the light beams and projecting the light beams onto different locations in the target optical system, and a wavefront sensor receiving scattered light from each of the locations and detecting individual wavefronts of the scattered light.
    • 测量诸如眼睛的光学系统的三维结构的像差的方法包括产生多个光束,光学地成像光束并将光束投射到光学系统中的不同位置,接收散射光 从每个位置检测散射光的各个波前。 可以同时或顺序地创建和投影多个光束。 用于测量光学系统的三维结构的像差的系统包括产生多个光束的光源,对光束进行光学成像并将光束投影到目标光学系统中的不同位置的光学成像系统,以及 波前传感器从每个位置接收散射光并检测散射光的各个波前。
    • 7. 发明申请
    • WAVEGUIDE-BASED APPARATUS FOR EXCITING AND SUSTAINING A PLASMA
    • 用于提升和维持等离子体的基于波形的装置
    • WO2015148414A1
    • 2015-10-01
    • PCT/US2015/022092
    • 2015-03-23
    • AGILENT TECHNOLOGIES, INC.
    • ZAIDI, SyedWILLIAMS, Peter, T.VAHIDPOUR, Mehrnoosh
    • H05H1/26H05H1/30H05H1/46
    • H05H1/30G01J3/443H01J49/421H01P3/127
    • An apparatus (100, 1000) includes an electromagnetic waveguide (100) which supports propagation of an electromagnetic wave in a first direction between a first end (102) thereof and a second end thereof (104), and an electromagnetic-field shaping structure (300) within the electromagnetic waveguide. The electromagnetic-field shaping structure defines a channel (108) extending from a first aperture (107) in a first wall (103-1) of the apparatus to a second aperture (109) in a second, opposite, wall (103-2). The channel has an axis extending in a second direction which is nonparallel with the first direction. The distance between the first aperture and the second aperture in the second direction is less than the width of the interior region (111) of the waveguide at the first and second ends thereof. In some embodiments, a plasma torch (900) is disposed within the channel. The length of the torch closely matches its interaction region.
    • 一种装置(100,1000)包括电磁波波导(100),其在第一端(102)和第二端(104)之间的第一方向上支持电磁波的传播,以及电磁场整形结构 300)在电磁波导内。 电磁场成形结构限定了从设备的第一壁(103-1)中的第一孔(107)延伸到第二相对的壁(103-2)中的第二孔(109)的通道(108) )。 通道具有沿与第一方向不平行的第二方向延伸的轴线。 第一孔和第二孔在第二方向上的距离小于波导在其第一和第二端处的内部区域(111)的宽度。 在一些实施例中,等离子体焰炬(900)设置在通道内。 火炬的长度与其相互作用区域紧密匹配。