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Atomic force microscopy capable of vibration isolation with low-stiffness Z-axis actuation

机译:具有低刚度Z轴致动能够振动隔离的原子力显微镜

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For high-resolution imaging without bulky external vibration isolation, this paper presents an atomic force microscope (AFM) capable of vibration isolation with its internal Z-axis (vertical) actuators moving the AFM probe. Lorentz actuators (voice coil actuators) are used for the Z-axis actuation, and flexures guiding the motion are designed to have a low stiffness between the mover and the base. The low stiffness enables a large Z-axis actuation of more than 700 mu m and mechanically isolates the probe from floor vibrations at high frequencies. To reject the residual vibrations, the probe tracks the sample by using a displacement sensor for feedback control. Unlike conventional AFMs, the Z-axis actuation attains a closed-loop control bandwidth that is 35 times higher than the first mechanical resonant frequency. The closed-loop AFM system has robustness against the flexures' nonlinearity and uses the first resonance for better sample tracking. For further improvement, feedforward control with a vibration sensor is combined, and the resulting system rejects 98.4% of vibrations by turning on the controllers. The AFM system is demonstrated by successful AFM imaging in a vibrational environment. (c) 2017 Elsevier B.V. All rights reserved.
机译:对于没有庞大的外部振动隔离的高分辨率成像,本文介绍了能够与其内部Z轴(垂直)执行器一起振动隔离的原子力显微镜(AFM),移动AFM探针。 Lorentz致动器(音圈致动器)用于Z轴致动,并且引导运动的弯曲设计成在动器和基座之间具有低刚度。低刚度使得大于700μm的大Z轴致动,并机械地将探针与高频处的地板振动隔离。为了拒绝残余振动,探针通过使用用于反馈控制的位移传感器跟踪样品。与传统的AFM不同,Z轴致动率达到闭环控制带宽,其比第一机械谐振频率高35倍。闭环AFM系统具有针对柔性的非线性的鲁棒性,并使用第一谐振进行更好的样品跟踪。为了进一步改进,组合具有振动传感器的前馈控制,通过打开控制器,所得到的系统拒绝了98.4%的振动。通过振动环境中成功的AFM成像来证明AFM系统。 (c)2017 Elsevier B.v.保留所有权利。

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