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首页> 外文期刊>Micro & Nano Letters, IET >Coupled dynamics of piezo-tube and microcantilever in scanning probe devices and sensitive samples imaging
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Coupled dynamics of piezo-tube and microcantilever in scanning probe devices and sensitive samples imaging

机译:压电探针和微悬臂梁在扫描探针装置和敏感样品成像中的耦合动力学

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摘要

This Letter discusses the controlled positioning problem for scanning probe devices, especially the dynamic mode atomic force microscope. The necessity of real-time imaging in the nanoworld and the high sensitivity of nanoobjects make simulation-based works highly important. Here, a sufficiently accurate dynamic model has been provided and coupled with a dual control plan to lower the force of tip on the sample and consequently keep the sample from being damaged. First, the dynamic model has been validated using the available theoretical and experimental results, and the effectiveness of the suggested dual control plan has been demonstrated. Then, the effects of amplitude set point and piezotube and cantilever lengths have been studied, so that a lower tip-sample force and, simultaneously, a better image quality can be achieved. The obtained results show that the amplitude set point can be raised considerably to obtain a lower tip-sample force. Furthermore, the tip-sample force may be reduced by increasing the cantilever length, whereas the changing of the tube length has no effect. Although the presented results may be utilised to avoid some expensive tests before the nanorobotic operations, it is well suited to situations in which a soft or sensitive sample is scanned.
机译:这封信讨论了扫描探针设备(尤其是动态模式原子力显微镜)的受控定位问题。纳米世界中实时成像的必要性和纳米物体的高灵敏度使得基于仿真的工作变得非常重要。在这里,已经提供了足够准确的动力学模型,并与双重控制计划相结合,以降低尖端对样品的作用力,从而防止样品受到损坏。首先,利用现有的理论和实验结果对动态模型进行了验证,并证明了所提出的双重控制计划的有效性。然后,研究了振幅设定点,压电管和悬臂长度的影响,从而可以实现较低的尖端采样力,并同时获得更好的图像质量。获得的结果表明,可以大幅提高幅度设定点,以获得较低的吸头采样力。此外,可以通过增加悬臂长度来减小尖端采样力,而改变管长则没有影响。尽管可以利用给出的结果来避免在纳米机器人操作之前进行一些昂贵的测试,但它非常适合扫描柔软或敏感样品的情况。

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  • 来源
    《Micro & Nano Letters, IET》 |2012年第9期|p.986-990|共5页
  • 作者单位

    Robotic Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran;

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