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    • 1. 发明授权
    • Electronic/photonic bandgap device
    • 电子/光子带隙装置
    • US07305168B1
    • 2007-12-04
    • US11729595
    • 2007-03-29
    • J. Scott RodgersJoanna N. PtasinskiStephen D. RussellMichael G. LovernRandy L. Shimabukuro
    • J. Scott RodgersJoanna N. PtasinskiStephen D. RussellMichael G. LovernRandy L. Shimabukuro
    • G02B6/10
    • G02B6/1225B82Y20/00G02B6/12007G02B6/43
    • A Electronic/Photonic Bandgap Device (NC#98614). The apparatus includes a substrate; an electronics layer operatively coupled to the substrate; and an optical bus layer operatively coupled to the electronics layer. The optical bus layer comprises at least one 3D photonic bandgap structure having at least one period operatively coupled to the electronics layer and comprising a plurality of honeycomb-like structures having a plurality of high index regions and a plurality of low index regions, wherein the plurality of honeycomb-like structures comprises at least four honeycomb-like structures layered over each other, wherein a second honeycomb-like structure is offset from a first honeycomb-like structure, wherein a third honeycomb-like structure is offset from a second honeycomb-like structure, and wherein a fourth honeycomb-like structure is not offset from the first honeycomb-like structure. The 3D photonic bandgap structure and the electronics layer are monolithically integrated over the substrate.
    • 电子/光子带隙装置(NC#98614)。 该装置包括基板; 可操作地耦合到所述衬底的电子层; 以及可操作地耦合到电子层的光学总线层。 光学总线层包括至少一个3D光子带隙结构,其具有可操作地耦合到电子层的至少一个周期,并且包括具有多个高折射率区域和多个低折射率区域的多个蜂窝状结构,其中多个 蜂窝状结构体包括彼此层叠的至少四个蜂窝状结构,其中第二蜂窝状结构偏离第一蜂窝状结构,其中第三蜂窝状结构偏离第二蜂窝状结构 结构,并且其中第四蜂窝状结构不从第一蜂窝状结构偏移。 3D光子带隙结构和电子层在衬底上单片集成。
    • 3. 发明授权
    • Optical-powered flexible photonic bandgap sensor device
    • 光电柔性光子带隙传感器装置
    • US08217382B1
    • 2012-07-10
    • US12715241
    • 2010-03-01
    • Joanna N. PtasinskiStephen D. RussellJ. Scott Rodgers
    • Joanna N. PtasinskiStephen D. RussellJ. Scott Rodgers
    • H01L29/06
    • B82Y20/00G02B6/1225
    • An optical-powered device includes a flexible substrate, a photonic bandgap layer coupled thereto, a waveguide contained within the photonic bandgap layer, and a dendrimer region contained within the waveguide. The dendrimer region may comprise more than one dendrimers. The dendrimer region emission band is within the photonic bandgap of the photonic bandgap layer. Multiple photonic bandgap layers may be included, with one or more waveguides therein. Each waveguide may have a dendrimer region therein. Electronic circuitry may be contained within a portion of the photonic bandgap layer. A light-modulating layer may be directly coupled to the photonic bandgap layer. A portion of the photonic bandgap layer may have a sensing material embedded therein. A cover layer having one or more windows may be coupled to the photonic bandgap layer. Another layer, such as a buffer layer, may be disposed between the substrate layer and the photonic bandgap layer.
    • 光学设备包括柔性衬底,耦合到其上的光子带隙层,包含在光子带隙层内的波导和包含在波导内的树枝状大分子区域。 树枝状大分子区域可以包含多于一个的树枝状大分子。 树枝状大分子区域发射带在光子带隙层的光子带隙内。 可以包括多个光子带隙层,其中具有一个或多个波导。 每个波导可以在其中具有树枝状大分子区域。 电子电路可以包含在光子带隙层的一部分内。 光调制层可以直接耦合到光子带隙层。 光子带隙层的一部分可以具有嵌入其中的感测材料。 具有一个或多个窗口的覆盖层可以耦合到光子带隙层。 可以在衬底层和光子带隙层之间设置诸如缓冲层的另一层。
    • 4. 发明授权
    • System and method for creating a flat wavefront using a photonic crystal
    • 使用光子晶体创建平坦波前的系统和方法
    • US08309371B1
    • 2012-11-13
    • US12506932
    • 2009-07-21
    • Paul R. De La HoussayeJ. Scott Rodgers
    • Paul R. De La HoussayeJ. Scott Rodgers
    • H01L21/027G03F7/00H01S3/05
    • H01L21/31058G02B1/005H01L21/0273H01L21/31055
    • A system and method include forming an optical cavity by positioning a photonic crystal a predetermined distance from a substrate, and creating, within the cavity, a standing wave having a substantially flat wavefront. The standing wave may be created by applying an input wave to a first surface of the photonic crystal. The predetermined distance may be such that a peak intensity of the standing wave is proximate to or a calculated distance from the substrate surface. The peak intensity may vary in relation to the substrate surface. The method may include tuning the peak intensity location within the cavity by shifting the wavelength of the input wave or altering the characteristics of the photonic crystal by an external field. A second photonic crystal may be used on the other side of the substrate to replace the reflecting properties of the substrate, allowing for further smoothing of the wavefront.
    • 一种系统和方法包括通过将光子晶体与衬底定位一定距离来形成光腔,并且在空腔内产生具有基本上平坦的波前的驻波。 可以通过将输入波施加到光子晶体的第一表面来产生驻波。 预定距离可以使得驻波的峰值强度接近或距离衬底表面的计算距离。 峰强度可以相对于衬底表面而变化。 该方法可以包括通过偏移输入波的波长或通过外部场来改变光子晶体的特性来调谐腔内的峰值强度位置。 可以在基板的另一侧使用第二光子晶体来代替基板的反射特性,从而允许进一步平滑波前。