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    • 1. 发明申请
    • SURFACE PLASMON SIGNAL TRANSMISSION
    • 表面等离子体信号传输
    • WO2007130092A2
    • 2007-11-15
    • PCT/US2006022782
    • 2006-06-12
    • VIRGIN ISLANDS MICROSYSTEMS
    • GORRELL JONATHANDAVIDSON MARKHART PAUL
    • G01N21/55
    • G02B6/1226B82Y20/00
    • A device for coupling an input signal to an output signal includes a metal transmission line; an ultra-small resonant receiver structure operatively connected to an end of the transmission line constructed and adapted receive the input signal and to cause at least part of the input signal to be passed along the transmission line in the form of plasmons; an ultra-small resonant transmitter structure operatively connected to another end of the transmission line and constructed and adapted to receive at least some of the plasmons corresponding to the input signal on the transmission line and to transmit the received signal as an output signal; a source of charged particles constructed and adapted to deliver a beam of charged particles along a path adjacent the ultra-small resonant receiver structure, wherein the input signal is encoded in the beam of charged particles; and a detector mechanism constructed and adapted to detect the output signal from the ultra- small resonant transmitter structure and to provide a signal representative of the output signal to another circuit. The receiver and/or transmitter structures may be formed on, in or adjacent to the transmission line.
    • 用于将输入信号耦合到输出信号的装置包括金属传输线; 一种超小型谐振接收器结构,其可操作地连接到所述传输线的端部,构造并适于接收所述输入信号,并且使所述输入信号的至少一部分沿着所述传输线以等离子体激元的形式传递; 超小型谐振发射器结构,其可操作地连接到所述传输线的另一端并构造并适于接收对应于所述传输线上的所述输入信号的至少一些所述等离子体,并将所述接收信号作为输出信号发射; 构成并适于沿着与超小谐振接收器结构相邻的路径输送带电粒子束的带电粒子源,其中输入信号被编码在带电粒子束中; 以及检测器机构,其构造并适于检测来自超小型谐振发射器结构的输出信号,并将表示输出信号的信号提供给另一电路。 接收机和/或发射机结构可以形成在传输线上,中间或邻近传输线。
    • 2. 发明申请
    • INTER-CHIP OPTICAL COMMUNICATION
    • 互通光纤通信
    • WO2007130094A3
    • 2009-04-16
    • PCT/US2006022784
    • 2006-06-12
    • VIRGIN ISLANDS MICROSYSTEMS
    • GORRELL JONATHANDAVIDSON MARK
    • G06F13/00
    • H04B10/803H04B10/801
    • A system includes a plurality of chips, at least one of said chips having transmission circuitry constructed and adapted to emit a signal in the form of electro-magnetic radiation (EMR), said transmission circuitry including one or more nano-resonant structures that emit said EMR when exposed to a beam of charged particles, and at least some of said chips having receiver circuitry constructed and adapted to receive an EMR signal. A connector is constructed and adapted to receive emitted EMR from said at least one of said chips having transmission circuitry and further constructed and adapted to provide data in said EMR emitted by said at least one of said chips to receiver circuitry of at least some others of said plurality of chips.
    • 一种系统包括多个芯片,所述芯片中的至少一个具有被构造并适于发出电磁辐射(EMR)形式的信号的传输电路,所述传输电路包括一个或多个发射所述 EMR当暴露于带电粒子束时,并且至少一些所述芯片具有构造并适于接收EMR信号的接收器电路。 连接器被构造并适于从具有传输电路的所述至少一个所述芯片接收发射的EMR,并进一步构造并适于将由所述至少一个所述芯片发射的所述EMR中的数据提供给至少一些 所述多个芯片。
    • 6. 发明申请
    • SWITCHING MICRO-RESONANT STRUCTURES BY MODULATING A BEAM OF CHARGED PARTICLES
    • 通过调制填充颗粒的束来切换微结构
    • WO2007081389A2
    • 2007-07-19
    • PCT/US2006022678
    • 2006-06-09
    • VIRGIN ISLANDS MICROSYSTEMS
    • GORRELL JONATHANDAVIDSON MARKMAINES MICHAEL E
    • H01P7/06
    • H01J25/34
    • When using micro-resonant structures, a resonant structure may be turned on or off (e.g., when a display element is turned on or off in response to a changing image or when a , communications switch is turned on or off to send data different data bits). Rather than turning the charged particle beam on and off, the beam may be moved to a position that does not excite the resonant structure, thereby turning off the resonant structure without having to turn off the charged particle beam. In one such embodiment, at least one deflector is placed between a source of charged particles and the resonant structure^) to be excited. When the resonant structure is to be turned on (i.e., excited), the at least one deflector allows the beam to pass by undefÊected. When the resonant structure is to be turned off, the at least one deflector deflects the beam away from the resonant structure by an amount sufficient to prevent the resonant structure from becoming excited.
    • 当使用微谐振结构时,可以打开或关闭谐振结构(例如,当响应于变化的图像打开或关闭显示元件或当通信开关被打开或关闭以发送数据不同的数据时 位)。 不是打开和关闭带电粒子束,而是可以将光束移动到不激发谐振结构的位置,从而关闭谐振结构,而不必关闭带电粒子束。 在一个这样的实施例中,至少一个偏转器被放置在被激励的带电粒子源和谐振结构之间。 当谐振结构要被接通(即被激励)时,至少一个偏转器允许光束通过未被去除的光束。 当谐振结构要关闭时,至少一个偏转器将光束从谐振结构偏离足以防止谐振结构被激发的量。