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    • 7. 发明申请
    • PHOTONIC-CRYSTAL TRANSPARENT-CONDUCTOR ASSEMBLY
    • 光电晶体透明导体总成
    • WO2009085102A1
    • 2009-07-09
    • PCT/US2008/013523
    • 2008-12-09
    • CORNING INCORPORATEDBORRELLI, Nicholas, F.KOCH, Karl W III
    • BORRELLI, Nicholas, F.KOCH, Karl W III
    • G02B6/10
    • G02B6/10G02B6/02342
    • A photonic-crystal (PC)-based transparent-conductor assembly is disclosed, wherein the assembly includes a photonic-crystal cloaking element (PCCE) that surrounds at least one opaque conducting element. The PCCE has a refractive index distribution designed to 'cloak' the at least one conductor contained therein from light incident upon the PCCE within a select wavelength range. The cloaking effect from the PCCE leaves light incident upon the assembly traveling in its original path as if undisturbed, thereby effectively rendering the conductor, as well as the PCCE, "transparent." This allows for the formation of a transparent conductor from an otherwise opaque conductor. One or more such PC transparent-conductor assemblies can be configured so that a pattern of otherwise opaque conducting elements can form a transparent electrode array useful for a variety of electric-field-driven optical devices such as optical displays.
    • 公开了一种基于光子晶体(PC)的透明导体组件,其中组件包括围绕至少一个不透明导电元件的光子晶体遮蔽元件(PCCE)。 PCCE具有折射率分布,其设计用于将选择波长范围内入射到PCCE上的光中包含的至少一个导体'披风'。 PCCE的掩盖效应使光线入射到原始路径上,如同不受干扰地运行,从而有效地使导体以及PCCE“透明”。 这允许从不透明导体形成透明导体。 可以配置一个或多个这样的PC透明导体组件,使得否则不透明的导电元件的图案可以形成用于各种电场驱动的光学器件(例如光学显示器)的透明电极阵列。
    • 8. 发明申请
    • PREFERENTIAL ETCHING METHOD OF FORMING A MICROSTRUCTURE FOR AN OPTICAL FIBRE
    • 形成光纤微结构的优选蚀刻方法
    • WO2008121270A1
    • 2008-10-09
    • PCT/US2008/003876
    • 2008-03-25
    • CORNING INCORPORATEDDABICH, Leonard C IiGALLAGHER, Michael THAWTOF, Daniel WHOOVER, Brett JKOCH, Karl W Iii
    • DABICH, Leonard C IiGALLAGHER, Michael THAWTOF, Daniel WHOOVER, Brett JKOCH, Karl W Iii
    • C03B37/012G02B6/02
    • G02B6/02357C03B37/01208C03B37/01228C03B2203/42
    • A method of fabricating a microstructure for an optical waveguide such as a photonic bandgap fiber is provided. The method includes the steps of assembling a stack of capillary tubes having substantially identical dimensions, fusing and redrawing the stack into a preform having a plurality of parallel holes of equal diameter, selecting a pattern of the holes for etching in order to increase their diameter, and plugging the unselected holes at one end of the preform against the flow of a pressurized etching fluid. Such plugging of the unselected holes is accomplished applying a layer of a gel-like sealant over the end of the preform, and then pushing the sealant into the holes to form sealant plugs in all of the holes. The sealant plugs are then removed from the selected holes by punching the sealant plugs out of the selected holes. The selected holes are then etched by conducting a pressurized flow of etching fluid to the end of the preform such that etching fluid flows only through the pattern of selected holes. The resulting preform is then fused and drawn into an optical waveguide, where the pattern of etched and unetched holes may form, for example, the microstructure for a photonic bandgap optical fiber.
    • 提供了一种制造诸如光子带隙光纤的光波导的微结构的方法。 该方法包括以下步骤:组装具有基本相同尺寸的毛细管堆叠,将叠层熔融并重新拉伸成具有多个相同直径的平行孔的预制件,选择用于蚀刻的孔的图案以增加其直径, 并且在预成型件的一端处与未加压的蚀刻流体的流动堵塞未选择的孔。 实现未选择的孔的这种堵塞是在预成型件的端部上施加一层凝胶状密封剂,然后将密封剂推入孔中以在所有孔中形成密封塞。 然后通过从所选择的孔中冲出密封剂塞从所选择的孔中移除密封塞。 然后通过将加压的蚀刻流体流引导到预成型件的端部来蚀刻所选择的孔,使得蚀刻流体仅流过选定孔的图案。 然后将所得的预制件熔合并拉入光波导,其中蚀刻和未蚀刻孔的图案可以形成例如光子带隙光纤的微结构。