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    • 1. 发明申请
    • OPTICAL RECEIVER
    • 光接收机
    • US20120243824A1
    • 2012-09-27
    • US13358595
    • 2012-01-26
    • Kazumasa TAKABAYASHI
    • Kazumasa TAKABAYASHI
    • G02B6/42
    • H01L31/03046H01L31/035281H01L31/105Y02E10/544
    • A tapered waveguide is provided for connection between an input waveguide and a photodiode. The width of the tapered waveguide increases as it extends from the input end that is connected to the input waveguide towards the output end that is connected to the photodiode. The tapered waveguide has an optimum half spread angle to cause higher-order mode excitation when receiving optical signal from the input waveguide. The photodiode either has a constant width or increases in width as it extends away from the output end of the tapered waveguide, its half spread angle being equal to or less than the half spread angle of the tapered waveguide.
    • 提供锥形波导用于输入波导和光电二极管之间的连接。 锥形波导的宽度随着从连接到输入波导的输入端延伸到连接到光电二极管的输出端而增加。 锥形波导具有最佳的半扩展角,以在从输入波导接收光信号时引起高阶模式激励。 当光电二极管从锥形波导的输出端延伸出时,光电二极管或者具有恒定的宽度或宽度增加,其半扩展角度等于或小于锥形波导的半扩展角。
    • 8. 发明授权
    • Optical integrated device
    • 光学集成器件
    • US07627212B2
    • 2009-12-01
    • US12181448
    • 2008-07-29
    • Shinsuke TanakaKazumasa TakabayashiAyahito Uetake
    • Shinsuke TanakaKazumasa TakabayashiAyahito Uetake
    • G02B6/34G02B6/26G02B6/42G02B6/10
    • H01S5/026G02B6/125G02B2006/121H01S5/4025H01S5/50
    • An optical integrated device includes an optical waveguide structure formed on a semiconductor substrate and including a plurality of first channel optical waveguide portions, an optical coupler portion and a second channel optical waveguide portion, a burying layer formed from a semi-insulating semiconductor material and burying the optical waveguide structure therein such that an upper portion thereof forms a flat face and a side portion thereof forms an inclined face having a predetermined angle with respect to the semiconductor substrate, and a plurality of dummy structure bodies provided over a desired region in the proximity of at least an output side of the optical coupler portion so that radiation light from the optical coupler portion is spatially separated from signal light propagating along the second channel optical waveguide portion. The plural dummy structure bodies are provided discretely so as to be buried flat by the burying layer.
    • 光学集成器件包括形成在半导体衬底上并包括多个第一通道光波导部分的光波导结构,光耦合部分和第二通道光波导部分,由半绝缘半导体材料形成的掩埋层和埋入 其中的光波导结构使得其上部形成平坦面,并且其侧部形成相对于半导体衬底具有预定角度的倾斜面,以及设置在邻近的所需区域上的多个虚设结构体 至少一个光耦合器部分的输出侧,使得来自光耦合器部分的辐射光与沿着第二通道光波导部分传播的信号光在空间上分离。 多个虚拟结构体离散地设置成被埋入层平坦地埋设。
    • 9. 发明申请
    • OPTICAL INTEGRATED DEVICE
    • 光学集成器件
    • US20090052834A1
    • 2009-02-26
    • US12181448
    • 2008-07-29
    • Shinsuke TANAKAKazumasa TAKABAYASHIAyahito UETAKE
    • Shinsuke TANAKAKazumasa TAKABAYASHIAyahito UETAKE
    • G02B6/12
    • H01S5/026G02B6/125G02B2006/121H01S5/4025H01S5/50
    • An optical integrated device includes an optical waveguide structure formed on a semiconductor substrate and including a plurality of first channel optical waveguide portions, an optical coupler portion and a second channel optical waveguide portion, a burying layer formed from a semi-insulating semiconductor material and burying the optical waveguide structure therein such that an upper portion thereof forms a flat face and a side portion thereof forms an inclined face having a predetermined angle with respect to the semiconductor substrate, and a plurality of dummy structure bodies provided over a desired region in the proximity of at least an output side of the optical coupler portion so that radiation light from the optical coupler portion is spatially separated from signal light propagating along the second channel optical waveguide portion. The plural dummy structure bodies are provided discretely so as to be buried flat by the burying layer.
    • 光学集成器件包括形成在半导体衬底上并包括多个第一通道光波导部分的光波导结构,光耦合部分和第二通道光波导部分,由半绝缘半导体材料形成的掩埋层和埋入 其中的光波导结构使得其上部形成平坦面,并且其侧部形成相对于半导体衬底具有预定角度的倾斜面,以及设置在邻近的所需区域上的多个虚设结构体 至少一个光耦合器部分的输出侧,使得来自光耦合器部分的辐射光与沿着第二通道光波导部分传播的信号光在空间上分离。 多个虚拟结构体离散地设置成被埋入层平坦地埋设。
    • 10. 发明授权
    • Tunable laser
    • 可调谐激光
    • US07366220B2
    • 2008-04-29
    • US11235250
    • 2005-09-27
    • Kazumasa Takabayashi
    • Kazumasa Takabayashi
    • H01S3/08
    • H01S5/12H01S5/0425H01S5/06256H01S5/06258H01S5/1218H01S5/1221H01S5/124H01S5/125H01S5/4012H01S5/4087
    • A tunable laser includes an optical waveguide alternately including a gain waveguide portion and a wavelength controlling waveguide portion, and a diffraction grating. The diffraction grating includes a gain diffraction grating and a wavelength controlling diffraction grating. A wavelength controlling region is configured such that the wavelength controlling waveguide portion and the wavelength controlling diffraction grating are included therein. A gain region is configured such that the gain waveguide portion and the gain diffraction grating are included therein. The Bragg wavelength of the wavelength controlling region is longer than that of the gain region in a state in which current injection or voltage application is not performed for the wavelength controlling waveguide portion.
    • 可调谐激光器包括交替地包括增益波导部分和波长控制波导部分的光波导和衍射光栅。 衍射光栅包括增益衍射光栅和波长控制衍射光栅。 波长控制区域被配置为使得波长控制波导部分和波长控制衍射光栅包括在其中。 增益区域被配置为使得增益波导部分和增益衍射光栅包括在其中。 在不对波长控制波导部分进行电流注入或施加电压的状态下,波长控制区域的布拉格波长比增益区域的布拉格波长长。