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    • 23. 发明授权
    • Cantilever light detectors having a mechanical cantilever to mechanically respond to illuminated light
    • 悬臂式光检测器具有机械悬臂以机械响应照明光
    • US07301137B2
    • 2007-11-27
    • US11400909
    • 2006-04-10
    • Girsh Blumberg
    • Girsh Blumberg
    • H01J40/14
    • G01J5/44
    • An apparatus includes a chamber, an electro-mechanical driver, a window, and a mechanical cantilever. The chamber has an interior in which the mechanical cantilever is located. The mechanical cantilever has a first end that is attached to the electro-mechanical driver and has second end that is free. The driver is configured to drive the mechanical cantilever to perform an oscillatory motion. The window is located along a wall of the chamber to enable external light to enter the chamber and illuminate a portion of the mechanical cantilever. The mechanical cantilever is configured to mechanically respond to being illuminated by the external light entering the chamber via the window.
    • 一种装置包括腔室,机电驱动器,窗口和机械悬臂。 该室具有机械悬臂所在的内部。 机械悬臂具有连接到机电驱动器的第一端,并且具有自由的第二端。 驱动器配置为驱动机械悬臂执行振荡运动。 窗口沿着室的壁定位,以使外部光进入室并照亮机械悬臂的一部分。 机械悬臂被配置为机械地响应被外部通过窗口进入腔室的光照射。
    • 29. 发明申请
    • PLASMONIC DEVICE FOR MODULATION AND AMPLIFICATION OF PLASMONIC SIGNALS
    • 用于调制和放大等离子体信号的等离子体装置
    • US20090195782A1
    • 2009-08-06
    • US12023489
    • 2008-01-31
    • Girsh BlumbergBenard Yurke
    • Girsh BlumbergBenard Yurke
    • G01N21/55
    • G02B6/1226B82Y20/00
    • According to one embodiment of the invention, a plasmonic device has a beam splitter adapted to split a surface-plasmon (SP) input beam into first and second SP beams and direct them along first and second propagation paths, respectively. One of the propagation paths has a plasmonic-beam interaction region adapted to controllably change the phase of the corresponding split beam within that interaction region in response to an SP control signal applied thereto. The plasmonic device further has an SP beam mixer adapted to receive the first and second beams from their respective propagation paths and to mix them to produce an SP output signal. In various configurations, the plasmonic device can operate as a plasmonic-signal amplifier, a plasmonic-beam router, a 1×2 plasmonic-beam switch, and/or a plasmonic modulator.
    • 根据本发明的一个实施例,等离子体激元装置具有适于将表面等离子体(SP)输入光束分裂成第一和第二SP光束并分别沿着第一和第二传播路径引导的分束器。 传播路径中的一个具有等离子体 - 束相互作用区域,其适于响应于施加到其上的SP控制信号来可控地改变该相互作用区域内的相应分割光束的相位。 等离子体元件装置还具有适于从其相应传播路径接收第一和第二波束并混合它们以产生SP输出信号的SP波束混合器。 在各种配置中,等离子体激元器件可以作为等离子体信号放大器,等离子体激元束路由器,1x2等离激元光束开关和/或等离子体激元调制器来操作。
    • 30. 发明授权
    • Atomic force microscope
    • 原子力显微镜
    • US07111504B2
    • 2006-09-26
    • US10954739
    • 2004-09-30
    • Girsh BlumbergCarl Johannes Schlockermann
    • Girsh BlumbergCarl Johannes Schlockermann
    • G01B5/28G01N13/16
    • G01Q20/02G01Q10/065
    • An apparatus includes a sample stage, a cantilever mount, a cantilever-force detector, a cantilever feedback system, and a sample stage feedback system. The sample stage is configured for holding a sample. The cantilever mount is configured for mechanically fixing a mechanical cantilever having a scanning tip. The cantilever-force detector is configured to produce an electrical cantilever-force error signal. The cantilever feedback system is configured to electromechanically drive the mechanical cantilever in a manner responsive to the cantilever-force error signal. The sample stage feedback system is configured to electromechanically displace the sample stage in a manner responsive to the cantilever-force error signal. The cantilever feedback system and the sample stage feedback system are connected to receive the cantilever-force error signal in parallel.
    • 一种装置包括样品台,悬臂安装座,悬臂力检测器,悬臂反馈系统和样品台反馈系统。 样品台被配置为保持样品。 悬臂安装件被配置为机械地固定具有扫描尖端的机械悬臂。 悬臂力检测器被配置为产生电悬臂力误差信号。 悬臂反馈系统被配置成以响应于悬臂力误差信号的方式机电地驱动机械悬臂。 样品台反馈系统被配置为以对悬臂力误差信号作出响应的方式机电地移位样品台。 悬臂反馈系统和样本台反馈系统相连,并联接收悬臂力误差信号。