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    • 82. 发明申请
    • LOW BEND LOSS OPTICAL FIBER
    • 低弯曲损耗光纤
    • WO2017172714A1
    • 2017-10-05
    • PCT/US2017/024472
    • 2017-03-28
    • CORNING INCORPORATED
    • BOOKBINDER, Dana CraigLI, Ming-JunMISHRA, Snigdharaj KumarTANDON, Pushkar
    • G02B6/036G02B6/02
    • Disclosed herein are optical waveguide fibers comprising: (I) a core comprising an outer radius r 1 , a maximum refractive index delta percent Δ 1max and core alpha, α, of larger than 5; and (II) a cladding surrounding the core, the cladding comprising: (i) an inner cladding region having outer radius r 2 and refractive index delta percent Δ 2 , wherein Δ 1max > Δ 2 ; (ii) a trench region surrounding the inner cladding region, the trench region having an outer radius, r 3 where r 3 ≥ 10 microns and refractive index delta percent Δ 3 ; and (iii) an outer cladding region having chlorine concentration of ≥ 1.2 wt.% surrounding the trench region and comprising refractive index delta percent Δ 4 , wherein Δ 1max > Δ 4 and Δ 2 > Δ 3 , and Δ 4 > Δ 3 and wherein the difference between Δ 4 and Δ 3 is ≥ 0.12 percent.
    • 本文公开了光波导纤维,其包括:(I)包含外半径r 1,最大折射率Δ百分比Δ1 max的芯体, 和大于5的核心α,α; 和(II)围绕所述纤芯的包层,所述包层包括:(i)具有外半径r 2和折射率Δ百分比Δ2的内包层区域,其中Δ 1max &gt; Δ<子> 2 ; (ii)包围内包层区域的沟槽区域,沟槽区域具有外半径r 3 3,其中r 3≥10微米且折射率增量百分数Δ 3 ; 和(iii)包围所述沟槽区并具有折射率Δ百分比Δ4的氯浓度≥1.2重量%的外包层区域,其中Δ1 max≤1。 Δ4和Δ2> 0。 Δ3,Δ4和​​Δ4。 Δ3和Δ4和Δ3之间的差值≥0.12%。
    • 85. 发明申请
    • OPTICAL WAVEGUIDE INTERCONNECT
    • 光波互连
    • WO2016183283A1
    • 2016-11-17
    • PCT/US2016/032012
    • 2016-05-12
    • CORNING INCORPORATED
    • CHEN, PengHUANG, ShengLI, Ming-Jun
    • G02B6/13
    • G02B6/26G02B6/13
    • A method for manufacturing an optical waveguide interconnect may comprise providing a substrate (12), irradiating portions (15) of the substrate's interior volume (14) by directing a processing laser beam into the substrate surface (12), thus defining one or more surfaces (22) that function as optic components, forming an embedded waveguide (25) in the interior volume (14) by directing the processing laser beam into the substrate surface (12), and etching away the weakened portions of the substrate's interior volume (14) overlying the defined surfaces using an etchant. The optic components and the waveguide may be aligned to be in optical communication with each other such that an input beam of light may strike the defined surface (22) of a first optic component, traverse the waveguide (25), and strike the defined surface of a second optic component.
    • 一种用于制造光波导互连的方法可以包括通过将处理激光束引导到衬底表面(12)中来提供衬底(12)来照射衬底的内部容积(14)的部分(15),从而限定一个或多个表面 (22),其用作光学部件,通过将所述处理激光束引导到所述衬底表面(12)中,在所述内部容积(14)中形成嵌入式波导(25),并蚀刻所述衬底的内部容积(14)的弱化部分 )使用蚀刻剂覆盖在限定的表面上。 光学部件和波导可以被对齐以彼此光学连通,使得输入光束可以撞击第一光学部件的限定表面(22),穿过波导(25)并且撞击限定的表面 的第二光学部件。