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Active probe for atomic resolution atomic force microscope and method of using same

机译:用于原子分辨率原子力显微镜的有源探头及其使用方法

摘要

An AFM that combines an AFM Z position actuator and a self-actuated Z position cantilever (both operable in cyclical mode and contact mode), with appropriate nested feedback control circuitry to achieve high-speed imaging and accurate Z position measurements. A preferred embodiment of an AFM for analyzing a surface of a sample includes a self-actuated cantilever having a Z-positioning element integrated therewith and an oscillator that oscillates the self-actuated cantilever at a frequency generally equal to a resonant frequency of the self-actuated cantilever and at an oscillation amplitude generally equal to a setpoint value. The AFM includes a first feedback circuit nested within a second feedback circuit, wherein the first feedback circuit generates a cantilever control signal in response to vertical displacement of the self-actuated cantilever during a scanning operation, and the second feedback circuit is responsive to the cantilever control signal to generate a position control signal. A Z position actuator is also included within the second feedback circuit and is responsive to the position control signal to position the sample. In operation, preferably, the cantilever control signal alone is indicative of the topography of the sample surface. In a further embodiment, the first feedback circuit includes an active damping circuit for modifying the quality factor ("Q") of the cantilever resonance to optimize the bandwidth of the cantilever response.
机译:AFM结合了AFM Z位置执行器和自驱动Z位置悬臂(均可在循环模式和接触模式下工作),并带有适当的嵌套反馈控制电路,可实现高速成像和准确的Z位置测量。用于分析样品表面的原子力显微镜的一个优选实施方案包括:自驱动悬臂,其上集成有Z定位元件;以及振荡器,其以通常等于自振动臂的共振频率的频率振荡自驱动悬臂。驱动的悬臂,其振幅通常等于设定值。 AFM包括嵌套在第二反馈电路内的第一反馈电路,其中第一反馈电路在扫描操作期间响应于自致动悬臂的垂直位移而产生悬臂控制信号,并且第二反馈电路对悬臂做出响应控制信号以产生位置控制信号。 Z位置致动器也包括在第二反馈电路内,并且响应于位置控制信号以定位样品。在操作中,优选地,单独的悬臂控制信号指示样品表面的形貌。在另一个实施例中,第一反馈电路包括有源阻尼电路,用于修改悬臂共振的品质因数(“ Q”)以优化悬臂响应的带宽。

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