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    • 3. 发明申请
    • Multi-stable molecular device
    • 多稳态分子装置
    • US20070090344A1
    • 2007-04-26
    • US11256856
    • 2005-10-24
    • R. WilliamsPhilip KuekesAlexandre Bratkovski
    • R. WilliamsPhilip KuekesAlexandre Bratkovski
    • H01L29/08
    • H01L29/0665B82Y10/00B82Y30/00H01L29/0673
    • In accordance with the present invention, a molecular device is provided that can act as a finite state machine, such as a logic device or a memory device. The molecular device includes operating molecules having two or more rotors. Each rotor has an electric dipole moment and multiple discrete rotor configurational states. A rotor can be any suitable and effective group that has an electric dipole moment and multiple discrete rotor configurational states. An individual rotor configurational state can be substantially or completely independent of the rotor configurational states of other rotors. The rotor configurational states can be binary. The molecular configurational state of a multi-stable molecule of a device can be ascertained by measuring conductance.
    • 根据本发明,提供了可以用作有限状态机的分子装置,例如逻辑装置或存储装置。 分子装置包括具有两个或更多个转子的操作分子。 每个转子具有电偶极矩和多个离散的转子配置状态。 转子可以是具有电偶极矩和多个离散转子配置状态的任何合适且有效的组。 各个转子结构状态可以基本上或完全独立于其它转子的转子构型状态。 转子配置状态可以是二进制的。 可以通过测量电导来确定器件的多稳态分子的分子结构状态。
    • 7. 发明授权
    • Metamaterial-based devices and methods for fabricating the same
    • 基于超材料的器件及其制造方法
    • US08604897B1
    • 2013-12-10
    • US11881287
    • 2007-07-26
    • Alexandre BratkovskiWei Wu
    • Alexandre BratkovskiWei Wu
    • H01P7/10G01N22/00
    • G01N21/05G01N21/658
    • Various embodiments of the present invention are directed to metamaterial-based devices and to methods of fabricating metamaterial-based devices. In one embodiment, a metamaterial-based device comprises a channel layer, a top metallic layer, and a bottom metallic layer. The channel layer has a top and a bottom surfaces, and at least one channel configured to transmit at least one material. The top metallic layer has a top surface and a bottom surface attached to the top surface of the channel layer and has a first lattice of openings extending between the top and bottom surfaces of the top metallic layer. The bottom metallic layer has a top surface and a bottom surface, wherein the top surface of the bottom metallic layer is attached to the bottom surface of the channel layer.
    • 本发明的各种实施例涉及基于超材料的装置以及制造基于超材料的装置的方法。 在一个实施例中,基于超材料的器件包括沟道层,顶部金属层和底部金属层。 沟道层具有顶表面和底表面,并且至少一个通道被配置成透射至少一种材料。 顶部金属层具有附接到沟道层的顶表面的顶表面和底表面,并且具有在顶部金属层的顶表面和底表面之间延伸的第一格子。 底部金属层具有顶表面和底表面,其中底部金属层的顶表面附着到沟道层的底表面。
    • 10. 发明授权
    • Optical modulator including electrically controlled ring resonator
    • 光调制器包括电控环形谐振器
    • US07764850B2
    • 2010-07-27
    • US12243782
    • 2008-10-01
    • Alexandre BratkovskiTheodore I. Kamins
    • Alexandre BratkovskiTheodore I. Kamins
    • G02B6/26G02F1/025
    • G02F1/025G02F2203/055G02F2203/15
    • An optical modulator and related methods are described. In accordance with one embodiment, the optical modulator comprises a waveguide for guiding an optical signal, and further comprises a ring resonator disposed in evanescent communication with the waveguide for at least one predetermined wavelength of the optical signal. The optical modulator further comprises a semiconductor pnpn junction structure that is at least partially coextensive with at least a portion of a resonant light path of the ring resonator. The optical modulator is configured such that the semiconductor pnpn junction structure receives an electrical control signal thereacross. The electrical control signal controls a free carrier population in the resonant light path where coextensive with the pnpn junction structure. A resonance condition of the ring resonator at the predetermined wavelength is thereby controlled by the electrical control signal, and the optical signal is thereby modulated according to the electrical control signal.
    • 描述了光学调制器及相关方法。 根据一个实施例,光学调制器包括用于引导光学信号的波导,并且还包括环形谐振器,该环形谐振器设置成与光波导的至少一个预定波长的与波导的渐逝通信。 光调制器还包括半导体pnpn结结构,其至少部分地与环形谐振器的谐振光路的至少一部分共同延伸。 光调制器被配置为使得半导体pnpn结结构在其上接收电控信号。 电控制信号控制共振光路中与pnpn结结构共同延伸的自由载流子。 因此,通过电气控制信号控制环形谐振器在预定波长处的谐振状态,并且由此根据电气控制信号调制光信号。