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    • 4. 发明授权
    • Hollow optical fiber and method for manufacturing the same
    • 中空光纤及其制造方法
    • US06735369B2
    • 2004-05-11
    • US10139424
    • 2002-05-06
    • Yuichi KomachiKatsuo Aizawa
    • Yuichi KomachiKatsuo Aizawa
    • G02B620
    • G02B6/032C03B37/014C03B37/0756C03B2201/82C03B2203/16C03C13/008G02B6/102
    • A hollow optical fiber 10 has an intermed ate dielectric layer 12 interposed between an inner periphery side dielectric layer 11 facing a hollow core portion 10a and a metal layer 13. The inner periphery side dielectric layer 11 is formed of calcium fluoride. The intermediate dielectric layer 12 is formed of yttrium fluoride. Metal of the metal layer 13 can be prevented from dispersing into the dielectric layers 12, 11 by the intermediate dielectric layer 12 formed of yttrium fluoride. The hollow optical fiber 10 is manufactured by vapor depositing calcium fluoride on an outer peripheral surface of an acid-soluble glass tube 20 (base material), then vapor depositing yttrium fluoride on its outer peripheral surface, then vapor depositing a metal layer formed of silver, gold or the like on its outer peripheral surface, and thereafter, dissolving the glass tube 20 with acid.
    • 中空光纤10具有插入在面向中空芯部10a的内周侧电介质层11和金属层13之间的中间电介质层12.内周侧电介质层11由氟化钙形成。 中间介电层12由氟化钇形成。 可以通过由氟化钇形成的中间介电层12防止金属层13的金属分散到电介质层12,11中。 中空光纤10通过在酸溶性玻璃管20(基材)的外周面上蒸镀氟化钙,然后在其外周面上蒸镀氟化钇,然后气相沉积由银形成的金属层 ,金等在其外周面上,然后用酸溶解玻璃管20。
    • 9. 发明授权
    • Guided radiation receiver assembly and a radiation delivery waveguide for use therewith
    • 导向辐射接收器组件和与其一起使用的辐射传输波导
    • US06188820B1
    • 2001-02-13
    • US08817366
    • 1998-06-15
    • Amnon Yogev
    • Amnon Yogev
    • G02B620
    • G02B6/262F24S23/12G02B6/4298Y02E10/40
    • A transparent radiation delivery waveguide and a guided radiation receiver assembly using the same, which assembly comprises a first transparent medium with a first refractive index n1, a receiver chamber having an aperture and holding a second transparent medium having a second refractive index n2, and the transparent radiation delivery waveguide having a third refractive index n3 substantially equal or greater than n1. The radiation delivery waveguide n3 consists of a transparent vessel holding a transparent liquid medium and has a first radiation intake portion in optical contact with the first transparent medium and held tightly within the aperture of the receiver chamber, and a second, tapered radiation delivery portion of non-circular cross-sectional shape, projecting into the receiver chamber.
    • 一种透明辐射传送波导和使用其的引导辐射接收器组件,该组件包括具有第一折射率n1的第一透明介质,具有孔径的接收器腔室并且保持具有第二折射率n2的第二透明介质, 具有基本上等于或大于n1的第三折射率n3的透明辐射传送波导。 辐射传送波导n3由保持透明液体介质的透明容器组成,并且具有与第一透明介质光学接触并保持在接收器腔室的孔内的第一辐射入口部分和第二辐射传送部分 非圆形横截面形状,突出到接收器室中。
    • 10. 发明授权
    • Pressed capillary optics
    • 压缩毛细管光学
    • US06738552B2
    • 2004-05-18
    • US10056661
    • 2002-01-22
    • Gregory Hirsch
    • Gregory Hirsch
    • G02B620
    • B29D11/00B29C43/18B29C2043/023B29L2011/00G21K1/06G21K2201/067
    • A capillary optic produced by impression has a mold with an external profile figured for radiation transmission along an axis used as a mandrel for impression. The mold often takes the form of a precisely etched wire. At least one soft plate is used for impressing the mold into the soft plate. The mold is removed from the soft plate to leave a vacant impression figured for radiation transmission in the soft plate along an axis. The impression is then closed to provide for radiation transmission along the axis of the impression. In the most common embodiment, two relatively soft plates having identical compositions with flat and highly polished initial surfaces are used. The impression(s) can be coated with reflective materials. Disclosure of an optical connector and emitter is included.
    • 通过压印产生的毛细管光学模具具有外形轮廓,其模型用于沿着用作印模心轴的轴的辐射传播。 模具通常采用精确蚀刻的线材的形式。 使用至少一个软板将模具压入软板。 将模具从软板上移除以留下空白的印象,用于沿软轴的辐射传播。 然后关闭印象以提供沿印象轴的辐射传播。 在最常见的实施例中,使用具有相同组成的两个相对较软的平板和高度抛光的初始表面。 这种印象可以涂上反光材料。 包括光连接器和发射器的公开。