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    • 72. 发明授权
    • Wavelength tunable filter and wavelength tunable laser module
    • 波长可调滤波器和波长可调激光模块
    • US08451872B2
    • 2013-05-28
    • US13469255
    • 2012-05-11
    • Hideo ArimotoMasahiro Aoki
    • Hideo ArimotoMasahiro Aoki
    • H01S3/10
    • G02F1/3133H01S5/06256H01S5/1032H01S5/1035
    • A wavelength tunable filter and a wavelength tunable laser module are a codirectional coupler type whose characteristics do not vary significantly with a process error. They are structured so as to include a semiconductor substrate which has a first optical waveguide and a second optical waveguide. The first and the second optical waveguides are extended from a first side of the semiconductor substrate to an opposing second side thereof. The first optical waveguide includes a first core layer, which has a planar layout having periodic convexes and concaves, and a pair of electrodes, which vertically sandwich the first core layer. The second optical waveguide includes a second core layer, which has a lower refractive index than the first core layer. Further, a layer having the same composition and film thickness as the second core layer is placed under the first core layer.
    • 波长可调滤波器和波长可调激光器模块是一种同向耦合器类型,其特性与处理误差不会显着变化。 它们被构造成包括具有第一光波导和第二光波导的半导体衬底。 第一和第二光波导从半导体衬底的第一侧延伸到相对的第二侧。 第一光波导包括具有周期性凸起和凹陷的平面布局的第一芯层和垂直夹着第一芯层的一对电极。 第二光波导包括具有比第一芯层低的折射率的第二芯层。 此外,具有与第二芯层相同的组成和膜厚度的层被放置在第一芯层下方。
    • 74. 发明授权
    • Optical transmitter/receiver module
    • 光发射机/接收机模块
    • US08036533B2
    • 2011-10-11
    • US12254036
    • 2008-10-20
    • Kazuhiko HosomiMisuzu SagawaToshiki SugawaraMasahiro Aoki
    • Kazuhiko HosomiMisuzu SagawaToshiki SugawaraMasahiro Aoki
    • H04J14/02
    • G02B6/4215G02B6/29367H04J14/02
    • An optical element mounting substrate where a plurality of light emitting elements have been mounted on the same plane, a lens array for collimating a plurality of light emitted from the plurality of light emitting elements, and a wavelength multiplexing/demultiplexing device are prepared. The wavelength multiplexing/demultiplexing device has typically mounted both a wavelength selecting filter and a mirror on front and rear planes of a transparent substrate. These three components are mounted within a package at a desirable angle position. Optical axes of respective wavelengths of the wavelength multiplexing/demultiplexing device are determined based upon a thickness and an angle of the light emitting element mounting substrate, and are arrayed on a straight line of a horizontal plane. As a consequence, if the respective light emitting elements are arranged on the optical axes which are exclusively determined by a design work, then optical multiplexing/demultiplexing operations can be carried out.
    • 准备了将多个发光元件安装在同一平面上的光学元件安装基板,准备从多个发光元件发出的多个光的透镜阵列和波长复用/解复用器件。 波长复用/解复用装置通常在透明基板的前面和后面平面上安装波长选择滤光器和反射镜。 这三个部件以期望的角度位置安装在包装内。 基于发光元件安装基板的厚度和角度确定波长多路复用/解复用装置的各个波长的光轴,并排列在水平面的直线上。 结果,如果各个发光元件被布置在专门由设计工作确定的光轴上,则可以执行光复用/解复用操作。
    • 76. 发明授权
    • Semiconductor laser apparatus
    • 半导体激光装置
    • US07970041B2
    • 2011-06-28
    • US12385735
    • 2009-04-17
    • Hideo ArimotoMasahiro Aoki
    • Hideo ArimotoMasahiro Aoki
    • H01S3/08
    • H01S5/141H01S5/02248H01S5/02284H01S5/0267H01S5/1082H01S5/1085H01S5/18H01S5/227H01S5/4087
    • A wavelength variable laser smaller in size than the conventional one can be achieved by arranging a gain chip, an etalon filter and a fifth reflective mirror on an AlN submount and longitudinally integrating the gain chip in which a 45° mirror and a lens are integrated and the etalon filter. A laser cavity has a structure in which light passes through an active layer from a first reflective mirror realized by an end surface of the gain chip, is reflected by the 45° mirror at an angle of 90° and then passes through the lens. The light having passed through the lens is converted into parallel light, passes through the etalon filter and reaches the fifth reflective mirror and is then reflected. The reflected light returns through the same optical path and reaches the first reflective mirror realized by the end surface of the gain chip.
    • 可以通过在AlN基座上布置增益芯片,标准具滤波器和第五反射镜并纵向积分其中集成45°反射镜和透镜的增益芯片来实现尺寸比常规小的波长可变激光器, 标准具过滤器。 激光腔具有光从通过增益芯片的端面实现的第一反射镜穿过有源层的结构,被45°反射镜以90°的角度反射,然后通过透镜。 通过透镜的光被转换为平行光,通过标准具过滤器并到达第五反射镜,然后被反射。 反射光通过相同的光路返回并到达由增益芯片的端面实现的第一反射镜。
    • 77. 发明授权
    • Image processing apparatus which removes image data of overlapping cells
    • 去除重叠单元的图像数据的图像处理装置
    • US07684606B2
    • 2010-03-23
    • US11312115
    • 2005-12-20
    • Masahiro Aoki
    • Masahiro Aoki
    • G06K9/00G06K9/66G01N21/25
    • G06K9/00127
    • An image processing apparatus includes an area specifying unit that specifies a closed area emitting fluorescence in a fluorescence image as a cell area in a cell population including a number of dispersed cells. The fluorescence image is generated from fluorescence emitted by the cell population irradiated with a scanning laser beam. The apparatus also includes a nucleus data removing unit that removes data corresponding to a nucleus in the cell area; an overlapping cell specifying unit that specifies an overlapping cell area where cells overlap, based on a fluorescence intensity of a cytoplasm portion corresponding to an image where the data corresponding to the nucleus is removed; and an analyzed image generating unit that generates an analyzed image where data of the overlapping cell area is removed from the fluorescence image.
    • 图像处理装置包括区域指定单元,该区域指定单元指定发射荧光图像中的荧光的封闭区域作为包括多个分散单元的细胞群体中的细胞区域。 荧光图像由用扫描激光束照射的细胞群发射的荧光产生。 该装置还包括核数据去除单元,其去除与细胞区域中的细胞核相对应的数据; 基于与去除对应的数据的图像相对应的细胞质部分的荧光强度来指定细胞重叠的重叠细胞区域的重叠细胞指定单元; 以及分析图像生成单元,其生成其中从所述荧光图像中去除所述重叠单元区域的数据的分析图像。
    • 78. 发明申请
    • Optical Transmitter/Receiver Module
    • 光发射机/接收机模块
    • US20090103923A1
    • 2009-04-23
    • US12254036
    • 2008-10-20
    • Kazuhiko HOSOMIMisuzu SagawaToshiki SugawaraMasahiro Aoki
    • Kazuhiko HOSOMIMisuzu SagawaToshiki SugawaraMasahiro Aoki
    • H04J14/02
    • G02B6/4215G02B6/29367H04J14/02
    • An optical element mounting substrate where a plurality of light emitting elements have been mounted on the same plane, a lens array for collimating a plurality of light emitted from the plurality of light emitting elements, and a wavelength multiplexing/demultiplexing device are prepared. The wavelength multiplexing/demultiplexing device has typically mounted both a wavelength selecting filter and a mirror on front and rear planes of a transparent substrate. These three components are mounted within a package at a desirable angle position. Optical axes of respective wavelengths of the wavelength multiplexing/demultiplexing device are determined based upon a thickness and an angle of the light emitting element mounting substrate, and are arrayed on a straight line of a horizontal plane. As a consequence, if the respective light emitting elements are arranged on the optical axes which are exclusively determined by a design work, then optical multiplexing/demultiplexing operations can be carried out.
    • 准备了将多个发光元件安装在同一平面上的光学元件安装基板,准备从多个发光元件发出的多个光的透镜阵列和波长复用/解复用器件。 波长复用/解复用装置通常在透明基板的前面和后面平面上安装波长选择滤光器和反射镜。 这三个部件以期望的角度位置安装在包装内。 基于发光元件安装基板的厚度和角度确定波长多路复用/解复用装置的各个波长的光轴,并排列在水平面的直线上。 结果,如果各个发光元件被布置在专门由设计工作确定的光轴上,则可以执行光复用/解复用操作。
    • 79. 发明授权
    • Scanning fluorescent microscope
    • 扫描荧光显微镜
    • US07365344B2
    • 2008-04-29
    • US11101053
    • 2005-04-06
    • Masahiro Aoki
    • Masahiro Aoki
    • G01J1/58G01N21/00
    • G01N21/6458G01N21/6408G01N21/6445
    • A scanning fluorescent microscope includes a light source which irradiates a sample with an exciting light pulse, and a splitter which splits fluorescent photons emitted from the sample excited by the exciting light pulse, in at least first and second groups. The scanning fluorescent microscope also includes first and second detectors which detect the fluorescent photons of the first and second group, respectively, first and second counters which count numbers of fluorescent photons detected by the detectors, respectively, first and second correcting units which perform a predetermined correction to the numbers of fluorescent photons, an adder adding the numbers of fluorescent photons corrected, and an operating unit which calculates a florescent lifetime based on resulting numbers from the adder.
    • 扫描荧光显微镜包括用激发光脉冲照射样品的光源和在至少第一组和第二组中分离从由激发光脉冲激发的样品发射的荧光光子的分离器。 扫描荧光显微镜还包括分别检测第一组和第二组的荧光光子的第一和第二检测器,分别对由检测器检测的荧光光子的数量进行计数的第一和第二计数器,第一和第二校正单元执行预定的 校正荧光光子的数量,加上校正的荧光光子数的加法器,以及基于从加法器得到的数字计算荧光寿命的操作单元。