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    • 92. 发明授权
    • Demultiplexer for a molecular wire crossbar network (MWCN DEMUX)
    • 分子线交叉网络解复用器(MWCN DEMUX)
    • US06256767B1
    • 2001-07-03
    • US09282049
    • 1999-03-29
    • Philip J. KuekesR. Stanley Williams
    • Philip J. KuekesR. Stanley Williams
    • G06F1750
    • G11C13/0009B82Y10/00G11C8/00G11C8/10G11C13/02G11C2213/14G11C2213/81Y10S977/943
    • A demultiplexer for a two-dimensional array of a plurality of nanometer-scale switches (molecular wire crossbar network) is disclosed. Each switch comprises a pair of crossed wires which form a junction where one wire crosses another and at least one connector species connecting said pair of crossed wires in said junction. The connector species comprises a bi-stable molecule. The demultiplexer comprises a plurality of address lines accessed by a first set of wires in the two-dimensional array by randomly forming contacts between each wire in the first set of wires to at least one of the address lines. The first set of wires crosses a second set of wires to form the junctions. The demultiplexer solves both the problems of data input and output to a molecular electronic system and also bridges the size gap between CMOS and molecules with an architecture that can scale up to extraordinarily large numbers of molecular devices. Further, the demultiplexer is very defect tolerant, and can work despite a large number of defects in the system.
    • 公开了一种用于多个纳米级开关(分子线交叉网络)的二维阵列的解复用器。 每个开关包括一对交叉线,其形成一条线与另一条线交叉的连接处,以及连接所述连接处的所述一对交叉线的至少一个连接器种类。 连接器种类包括双稳态分子。 解复用器包括通过在第一组线中的每个线之间随机形成至少一个地址线的接触,由二维阵列中的第一组线路访问的多个地址线。 第一组导线穿过第二组电线以形成接合部。 解复用器解决了数据输入和输出到分子电子系统的问题,并且还利用可以扩展到非常大数量的分子器件的架构来桥接CMOS和分子之间的尺寸间隙。 此外,解复用器是非常缺陷容忍的,并且尽管系统中存在大量的缺陷,但它可以工作。
    • 97. 发明授权
    • Dynamically reconfigurable holograms for generating color holographic images
    • 用于产生彩色全息图像的动态可重构全息图
    • US08797382B2
    • 2014-08-05
    • US13264073
    • 2009-04-13
    • Jingjing LiPhilip J. Kuekes
    • Jingjing LiPhilip J. Kuekes
    • G02F1/1335G03H1/14H04N15/00
    • G03H1/02G03H1/2294G03H2001/0224G03H2001/2271G03H2222/18G03H2225/22G03H2225/32G03H2225/33
    • Various embodiments of the present invention are directed to negative refractive index-based holograms that can be electronically controlled and dynamically reconfigured to generate one or more color three-dimensional holographic images. In one aspect, a hologram comprises a phase-control layer having a plurality of phase modulation elements. The phase-modulation elements are configured with a negative effective refractive index and selectively transmit wavelengths associated with one of three primary color wavelength. The hologram also includes an intensity-control layer including a plurality of intensity-control elements. One or more color three-dimensional images can be produced by electronically addressing the phase-modulation elements and intensity-control elements in order to phase shift and control the intensity of light transmitted through the hologram. A method for generating a color holographic image using the hologram is also provided, as is a system for generating a color holographic image.
    • 本发明的各种实施例涉及基于负折射率的全息图,其可以被电子控制和动态地重新配置以产生一个或多个彩色三维全息图像。 一方面,全息图包括具有多个相位调制元件的相位控制层。 相位调制元件被配置为具有负的有效折射率并选择性地传输与三原色波长之一相关联的波长。 全息图还包括包括多个强度控制元件的强度控制层。 可以通过电子寻址相位调制元件和强度控制元件来产生一个或多个彩色三维图像,以便相移和控制透射通过全息图的光的强度。 还提供了使用全息图产生彩色全息图像的方法,以及用于产生彩色全息图像的系统。
    • 100. 发明授权
    • Nanoscale multiplexer
    • 纳米复合器
    • US08258801B2
    • 2012-09-04
    • US12380910
    • 2009-03-05
    • Philip J. Kuekes
    • Philip J. Kuekes
    • G01R11/32H01L29/04
    • G11C13/025B82Y10/00G11C13/0002G11C13/0023G11C2213/77G11C2213/81
    • In one embodiment of the present invention, a microscale or sub-microscale signal line, interconnected with one set of parallel nanowires of a nanowire crossbar, serves as a multiplexer. The multiplexer is used to detect the conductivity state of a nanowire junction within the nanowire crossbar. In one method embodiment of the present invention, a first signal is output to the two nanowires interconnected by the nanowire junction, while a second signal is output to the remaining nanowires of the nanowire crossbar. Then, the second signal is output to the two nanowires interconnected by the nanowire junction, while the first signal is output to the remaining nanowires of the nanowire crossbar. The resulting signal detected on the multiplexer is reflective of the conductivity state of the nanowire junction.
    • 在本发明的一个实施例中,与纳米线横截面的一组平行纳米线互连的微尺度或亚微米级信号线用作多路复用器。 多路复用器用于检测纳米线横截面内的纳米线结的导电性状态。 在本发明的一个方法实施例中,第一信号被输出到通过纳米线结互连的两个纳米线,而第二信号被输出到纳米线横截面的剩余纳米线。 然后,第二信号被输出到通过纳米线结互连的两个纳米线,而第一个信号被输出到纳米线横截面的剩余纳米线。 在多路复用器上检测到的结果信号反映了纳米线结的导电性状态。