用机械杠杆对双探针纳米镊子进行力校正

Hui Xie, W. Rong, A. Wu, Chen Yang, Lining Sun
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摘要

提出了一种在双探针纳米镊子中应用的非接触力标定方法。开发了一种2自由度机械杠杆,用于直接校准两个光学杠杆的法向和侧向灵敏度,这两个光学杠杆用于独立测量施加在纳米镊子上的法向和侧向力。机械杠杆设计为两个相互垂直的杠杆,每个杠杆由两个柔性铰链组成,共享同一个旋转中心,每个杠杆可以将平移转换为纳米级的旋转角度,从而在光电二极管电压输出和悬臂的偏转角度之间提供精确的转换。在校准过程中,悬臂安装在机械杠杆上,并附着在柔性铰链的旋转中心上。利用其在z轴上的纳米运动和屏障上的外部运动,该装置可以在不修改实际AFM或悬臂的情况下完成光学杠杆的局部和全范围灵敏度校准。光学杠杆的法向和侧向非线性都得到了精确的补偿。
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Force calibration of a dual-probe nanotweezer using a mechanical lever
This paper presents a noncontact force calibration method in applications of the dual-probe nanotweezer. A 2 DOF mechanical lever has been developed to directly calibrate both the normal and lateral sensitivities of two optical levers used to independently measure normal and lateral forces applied on the nanotweezer. The mechanical lever is designed with a configuration of two mutually perpendicular levers, each consists of two flexible hinges, sharing a same rotational center, Each lever can convert the translation into a nanoscale rotation angle that provides an accurate conversion between the photodiode voltage output and deflective angle of a cantilever. During the calibration, a cantilever is mounted on the mechanical lever and attached on the rotational center of the flexible hinges. By making use of its nanomotion on the Z-axis and using an external motion on the barrier, this device can complete the local and full-range sensitivity calibrations of the optical levers without modifying the actual AFM or the cantilevers. Nonlinearities on both normal and lateral of the optical levers have been accurately compensated.
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