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    • 92. 发明授权
    • Memcapacitor
    • 电容器
    • US08750024B2
    • 2014-06-10
    • US13256245
    • 2009-06-18
    • Alexandre M. BratkovskiR. Stanley Williams
    • Alexandre M. BratkovskiR. Stanley Williams
    • G11C11/24
    • G11C11/24G11C13/0002H01G4/1272H01G4/255H01G4/33H01L27/101H01L28/40
    • A memcapacitor device (100) includes a first electrode (104) and a second electrode (106) and a memcapacitive matrix (102) interposed between the first electrode (104) and the second electrode (106). Mobile dopants (111) are contained within the memcapacitive matrix (102) and are repositioned within the memcapacitive matrix (102) by the application of a programming voltage (126) across the first electrode (104) and second electrode (106) to alter the capacitance of the memcapacitor (100). A method for utilizing a memcapacitive device (100) includes applying a programming voltage (126) across a memcapacitive matrix (102) such that mobile ions (111) contained within a memcapacitive matrix (102) are redistributed and alter a capacitance of the memcapacitive device (100), then removing the programming voltage (126) and applying a reading voltage to sense the capacitance of the memcapacitive device (100).
    • 电容器装置(100)包括插入在第一电极(104)和第二电极(106)之间的第一电极(104)和第二电极(106)和存储电容矩阵(102)。 移动掺杂剂(111)被包含在存储器电容矩阵(102)内,并且通过跨越第一电极(104)和第二电极(106)施加编程电压(126)而重新定位在存储电容矩阵(102)内,以改变 电容器(100)的电容。 一种利用存储电容器件(100)的方法包括跨越存储电容矩阵(102)施加编程电压(126),使得包含在存储电容矩阵(102)内的移动离子(111)被重新分配并改变存储器件的电容 (100),然后去除所述编程电压(126)并施加读取电压以感测所述存储器件(100)的电容。
    • 96. 发明授权
    • Phase detection of Raman scattered light
    • 拉曼散射光的相位检测
    • US08582097B2
    • 2013-11-12
    • US13016395
    • 2011-01-28
    • Alexandre M. BratkovskiIgor Lukyanchuk
    • Alexandre M. BratkovskiIgor Lukyanchuk
    • G01J3/44
    • G01J3/44G01J3/021G01J3/0224G01J3/453G01N21/21G01N21/65
    • An apparatus for phase detection of Raman scattered light emitted from a sample includes a first polarizer positioned along a first optical path containing a first beam and a second polarizer positioned along a second optical path containing a second beam. The first polarizer and second polarizer polarize the first beam and the second beam in one of mutually perpendicular and mutually parallel first and second directions. The apparatus also includes an optical phase modulator positioned along the second optical path to controllably modulate a phase of the second beam, a beam splitter positioned to join the first beam and the second beam together, and a spectrometer to receive the joined first beam and second beam and to measure a phase shift of the first beam and the second beam.
    • 用于从样品发射的拉曼散射光的相位检测装置包括沿着包含第一光束的第一光路定位的第一偏振器和沿着包含第二光束的第二光路定位的第二偏振器。 第一偏振器和第二偏振器使第一光束和第二光束以相互垂直和相互平行的第一和第二方向之一偏振。 该装置还包括沿着第二光路定位的光学相位调制器,以可控制地调制第二光束的相位,将分光镜定位成将第一光束和第二光束连接在一起的光束分离器,以及用于接收连接的第一光束和第二光束的光谱仪 并且测量第一光束和第二光束的相移。
    • 99. 发明授权
    • Image viewing systems with an integrated screen lens
    • 具有集成屏幕镜头的图像查看系统
    • US08459797B2
    • 2013-06-11
    • US12917387
    • 2010-11-01
    • Huei Pei KuoAlexandre M. Bratkovski
    • Huei Pei KuoAlexandre M. Bratkovski
    • G03B21/00
    • G02B27/2214G02B3/08G03B21/60G03B35/20
    • This disclosure is directed to rear projection and front projection image viewing systems. In one aspect, an image viewing system includes a screen composed of a lens and a reflective diffuser with a microstructured surface. The system also includes an array of projectors. Each projector is to project an image onto the screen with a particular angle of incidence such that each image is to pass through the lens and is to be reflected back though the lens by the reflective diffuser with a horizontal scattering angle determined by the microstructured surface. The lens is to direct each reflected image to a particular viewing area so that a viewer located in at least one viewing area receives a reflected image that enters one or both of the viewer's eyes when the viewer looks at the screen.
    • 本公开涉及后投影和前投影图像观看系统。 一方面,图像观看系统包括由透镜和具有微结构化表面的反射扩散器组成的屏幕。 该系统还包括一组投影机。 每个投影机将以特定的入射角将图像投影到屏幕上,使得每个图像要穿过透镜,并且通过反射漫射器通过透镜以由微结构化表面确定的水平散射角度被反射回来。 透镜将每个反射的图像引导到特定的观看区域,使得当观看者观看屏幕时,位于至少一个观看区域中的观看者接收进入观看者的眼睛中的一个或两个的反射图像。