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Combined frequency modulated atomic force microscopy and scanning tunneling microscopy detection for multi-tip scanning probe microscopy applications

机译:组合式调频原子力显微镜和扫描隧道显微镜检测在多尖端扫描探针显微镜应用中的应用

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摘要

A method which allows scanning tunneling microscopy(STM) tip biasing independent of the sample bias during frequency modulated atomic force microscopy(AFM) operation is presented. The AFM sensor is supplied by an electronic circuit combining both a frequency shift signal and a tunneling current signal by means of an inductive coupling. This solution enables a control of the tip potential independent of the sample potential. Individual tip biasing is specifically important in order to implement multi-tip STM/AFM applications. An extensional quartz sensor (needle sensor) with a conductive tip is applied to record simultaneously topography and conductivity of the sample. The high resonance frequency of the needle sensor (1 MHz) allows scanning of a large area of the surface being investigated in a reasonably short time. A recipe for the amplitude calibration which is based only on the frequency shift signal and does not require the tip being in contact is presented. Additionally, we show spectral measurements of the mechanical vibration noise of the scanning system used in the investigations.
机译:提出了一种在频率调制原子力显微镜(AFM)操作过程中独立于样品偏压的扫描隧道显微镜(STM)尖端偏压的方法。 AFM传感器由电子电路提供,该电子电路通过电感耦合将频移信号和隧穿电流信号结合在一起。该解决方案使得可以独立于样品电势来控制尖端电势。为了实现多尖端STM / AFM应用,单个尖端偏置特别重要。使用带有导电尖端的拉伸石英传感器(针式传感器)来同时记录样品的形貌和电导率。针式传感器的高共振频率(1 MHz)允许在相当短的时间内扫描待调查表面的大面积。提出了仅基于频移信号并且不需要尖端接触的幅度校准方法。此外,我们显示了调查中使用的扫描系统的机械振动噪声的频谱测量结果。

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