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Wideband phase-locked loop circuit with real-time phase correction for frequency modulation atomic force microscopy

机译:宽带锁相环电路,具有用于调频原子力显微镜的实时相位校正

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摘要

We have developed a wideband phase-locked loop (PLL) circuit with real-time phase correction for high-speed and accurate force measurements by frequency modulation atomic force microscopy (FM-AFM) in liquid. A high-speed operation of FM-AFM requires the use of a high frequency cantilever which, however, increases frequency-dependent phase delay caused by the signal delay within the cantilever excitation loop. Such phase delay leads to an error in the force measurements by FM-AFM especially with a low Q factor. Here, we present a method to compensate this phase delay in real time. Combined with a wideband PLL using a subtraction-based phase comparator, the method allows to perform an accurate and high-speed force measurement by FM-AFM. We demonstrate the improved performance by applying the developed PLL to three-dimensional force measurements at a mica/water interface. © 2011 American Institute of Physics.
机译:我们已经开发了一种具有实时相位校正功能的宽带锁相环(PLL)电路,用于通过液体中的调频原子力显微镜(FM-AFM)进行高速,精确的力测量。 FM-AFM的高速运行需要使用高频悬臂,但是,这会增加由悬臂激励环路内信号延迟引起的频率相关的相位延迟。这种相位延迟会导致FM-AFM的力测量出现误差,尤其是在Q值较低的情况下。在这里,我们提出一种实时补偿此相位延迟的方法。结合使用基于减法的相位比较器的宽带PLL,该方法可以通过FM-AFM执行准确而高速的力测量。通过将开发的PLL应用于云母/水界面的三维力测量,我们展示了改进的性能。 ©2011美国物理研究所。

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