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    • 2. 发明授权
    • Optical fiber and fiber grating type filter including the same
    • 光纤和光纤光栅类型的滤光片包括相同的
    • US07203399B2
    • 2007-04-10
    • US10747085
    • 2003-12-30
    • Shinji IshikawaToshiki TaruMasakazu ShigeharaMasaki Ohmura
    • Shinji IshikawaToshiki TaruMasakazu ShigeharaMasaki Ohmura
    • G02B6/00
    • G02B6/03694G02B6/02085G02B6/02119G02B6/03611
    • The present invention relates to an optical fiber having a structure which allows further improvements to be made both in terms of lower reflectance and narrower bandwidth, and to a fiber grating type filter including the optical fiber. The optical fiber applied to the fiber grating type filter comprises a core region extending along a predetermined axis, and a cladding region provided on an outer periphery of the core region. The core region does not contain any photosensitive dopant which contributes to predetermined wavelength light photosensitivity as a glass property, but a part of the cladding region contain such a photosensitive dopant. By means of this composition, it is possible to form a grating, which has a grating plane slanted by a predetermined angle with respect to the optical axis, in a part of the cladding region surrounding the core region.
    • 本发明涉及具有能够进一步改善低反射率和较窄带宽的结构的光纤以及包括该光纤的光纤光栅型滤光器。 施加到光纤光栅型滤光器的光纤包括沿着预定轴线延伸的芯区域和设置在芯区域的外周上的包层区域。 核心区域不含任何有助于作为玻璃性能的预定波长光敏性的光敏掺杂剂,但是包层区域的一部分含有这种光敏掺杂剂。 通过这种组合,可以形成光栅,该光栅具有相对于光轴倾斜预定角度的光栅平面,该光栅平面围绕着核心区域的一部分包层区域。
    • 6. 发明申请
    • Optical amplifier fiber
    • 光放大器光纤
    • US20060262387A1
    • 2006-11-23
    • US11434073
    • 2006-05-16
    • Tetsuya HarunaToshiki TaruMasashi OnishiMotoki KakuiShinji Ishikawa
    • Tetsuya HarunaToshiki TaruMasashi OnishiMotoki KakuiShinji Ishikawa
    • H01S3/00H04B10/12
    • H01S3/06716
    • Provided is an optical amplifier fiber in which both increasing output light power and sufficiently inhibiting the occurrence of nonlinear optical phenomenon can be compatibly achieved. In addition, an optical amplifier and light source equipment, in which such optical amplifier fiber is used, are provided. The optical amplifier fiber comprises (1) a core region doped with an aluminum element in the range of 1 wt % to 10 wt %, an erbium element in the range of 1000 wt. ppm to 5000 wt. ppm, and a fluorine element, the core region having an outer diameter in the range of 10 μm to 30 μm, and (2) a cladding region surrounding the core region and having a refractive index that is lower than the core region, wherein the relative refractive index difference of the core region relative to the cladding region is 0.3% or more and 2.0% or less.
    • 提供了可以兼容地实现增加输出光功率并充分抑制非线性光学现象的发生的光放大器光纤。 此外,提供了使用这种光放大器光纤的光放大器和光源设备。 光放大器光纤包括(1)掺杂有1重量%至10重量%范围的铝元素的芯区域,铒元素在1000重量%范围内。 ppm至5000wt。 ppm,以及氟元素,芯区域的外径在10μm〜30μm的范围内,(2)围绕芯区域的折射率低于芯区域的包层区域,其中, 芯区域相对于包层区域的相对折射率差为0.3%以上且2.0%以下。
    • 9. 发明授权
    • Multi-core optical fibre
    • 多芯光纤
    • US08433166B2
    • 2013-04-30
    • US13377868
    • 2011-01-26
    • Takuji NagashimaToshiki TaruTakashi Sasaki
    • Takuji NagashimaToshiki TaruTakashi Sasaki
    • G02B6/028
    • G02B6/02042
    • A multi-core optical fiber 1A in which a plurality of cores can easily be identified even in the case where they are symmetrically arranged in its section has seven cores 10 to 16, a visual recognition marker 20, and a shared cladding 30 enclosing the seven cores 10 to 16 and the visual recognition marker 20. The cores 10 to 16 and the visual recognition marker 20 extend along the fiber-axis direction. The respective refractive index of the cores 10 to 16 is higher than the refractive index of the cladding 30. The refractive index of the visual recognition marker 20 differs from that of the cladding 30. In the cross-section perpendicular to the fiber-axis, the cores 10 to 16 are arranged such that they have 6-fold rotational symmetry and line symmetry. The visual recognition marker 20 is arranged at a position which breaks such symmetry.
    • 即使在其部分对称布置的情况下,即使容易识别多个芯的多芯光纤1A也具有七个磁芯10至16,视觉识别标记20和包围七个磁芯的共享包层30 芯10至16和视觉识别标记20.芯10至16和视觉识别标记20沿着光纤轴方向延伸。 芯10至16的相应折射率高于包层30的折射率。视觉识别标记20的折射率与包层30的折射率不同。在垂直于纤维轴的横截面中, 芯10至16被布置成使得它们具有6倍的旋转对称性和线对称性。 视觉识别标记20被布置在破坏这种对称的位置。