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    • 4. 发明授权
    • Compute clusters employing photonic interconnections for transmitting optical signals between compute cluster nodes
    • 使用光子互连计算集群,用于在计算集群节点之间传输光信号
    • US07720377B2
    • 2010-05-18
    • US11337328
    • 2006-01-23
    • Gregory S. SniderRaymond Beausoleil
    • Gregory S. SniderRaymond Beausoleil
    • H04J14/00
    • H04Q11/0001B82Y10/00B82Y20/00G02B6/1225G02B6/43G06N99/002H04B10/801H04L49/101H04L49/254H04L49/3045H04L49/357
    • Various embodiments of the present invention are directed to photonic-interconnection-based compute clusters that provide high-speed, high-bandwidth interconnections between compute cluster nodes. In one embodiment of the present invention, the compute cluster includes a photonic interconnection having one or more optical transmission paths for transmitting independent frequency channels within an optical signal to each node in a set of nodes. The compute cluster includes one or more photonic-interconnection-based writers, each writer associated with a particular node, and each writer encoding information generated by the node into one of the independent frequency channels. A switch fabric directs the information encoded in the independent frequency channels to one or more nodes in the compute cluster. The compute cluster also includes one or more photonic-interconnection-based readers, each reader associated with a particular node, and each reader extracting the information encoded in the independent frequency channels directed to the node for processing.
    • 本发明的各种实施例涉及在计算集群节点之间提供高速,高带宽互连的基于光子互连的计算集群。 在本发明的一个实施例中,计算集群包括具有一个或多个光传输路径的光子互连,用于将光信号内的独立频率信道传送到一组节点中的每个节点。 计算集群包括一个或多个基于光子互连的写入器,每个写入器与特定节点相关联,并且每个写入器将由节点生成的信息编码为独立频率信道之一。 交换结构将在独立频率信道中编码的信息定向到计算集群中的一个或多个节点。 计算集群还包括一个或多个基于光子互连的读取器,每个读取器与特定节点相关联,并且每个读取器提取在指向节点的独立频率信道中编码的信息进行处理。
    • 7. 发明申请
    • AUTONOMOUS EVANESCENT OPTICAL NANOSENSOR
    • 自动光纤光学传感器
    • US20070154129A1
    • 2007-07-05
    • US11127542
    • 2005-05-11
    • Raymond BeausoleilPhilip KuekesR. Williams
    • Raymond BeausoleilPhilip KuekesR. Williams
    • G02B6/00
    • G01N21/7703G01N21/648G01N21/65G01N21/94G01N33/569G01N35/00871G01N2021/7786G01N2035/00881
    • A sensor includes traps that are adjacent to a waveguide and capable of holding a contaminant for an interaction with an evanescent field surrounding the waveguide. When held in a trap, a particle of the contaminant, which may be an atom, a molecule, a virus, or a microbe, scatters light from the waveguide, and the scattered light can be measured to detect the presence or concentration of the contaminant. Holding of the particles permits sensing of the contaminant in a gas where movement of the particles might otherwise be too fast to permit measurement of the interaction with the evanescent field. The waveguide, a lighting system for the waveguide, a photosensor, and a communications interface can all be fabricated on a semiconductor die to permit fabrication of an autonomous nanosensor capable of suspension in the air or a gas being sensed.
    • 传感器包括与波导相邻并且能​​够保持污染物以与与波导周围的ev逝场相互作用的阱。 当保持在陷阱中时,可能是原子,分子,病毒或微生物的污染物的颗粒散射来自波导的光,并且可以测量散射光以检测污染物的存在或浓度 。 保持颗粒允许感测气体中的污染物,其中颗粒的移动可能太快以至于不能测量与渐逝场的相互作用。 波导,用于波导的照明系统,光传感器和通信接口都可以在半导体管芯上制造,以允许制造能够在空气中悬浮的自主纳米传感器或被感测的气体。
    • 9. 发明申请
    • Evanescent nanosensor using an optical resonator
    • 消光纳米传感器使用光学谐振器
    • US20070036479A1
    • 2007-02-15
    • US11127869
    • 2005-05-11
    • Raymond Beausoleil
    • Raymond Beausoleil
    • G02B6/26
    • G02B6/1225B82Y20/00G01N15/0205G01N21/774G01N21/7746G01N21/94G01N2021/7789
    • A sensor includes an optical resonator, a trap, and a measurement system. The trap is positioned to hold captured contaminant within an evanescent field of the optical resonator. The measurement system can detect the effect of the captured contaminant on the optical resonator. The sensor can includes a photonic crystal that contains defects forming the optical resonator and a waveguide to which the optical resonator is coupled. Yet another embodiment is a sensing method that exposes a trap that is adjacent to an optical resonator to an environment that may contain a contaminant that the trap can capture. Light having a wavelength that interacts with the contaminant can then be coupled into the optical resonator, and the effect of any captured contaminant on the optical resonator can be measured.
    • 传感器包括光学谐振器,陷阱和测量系统。 阱被定位成将捕获的污染物保持在光学谐振器的消逝场内。 测量系统可以检测被捕获的污染物对光学谐振器的影响。 传感器可以包括光子晶体,其包含形成光学谐振器的缺陷和光学谐振器耦合到的波导。 另一个实施例是一种感测方法,其将与光学谐振器相邻的陷波器暴露于可能包含陷阱能够捕获的污染物的环境。 然后可以将具有与污染物相互作用的波长的光耦合到光学谐振器中,并且可以测量任何捕获的污染物对光学谐振器的影响。