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Laser Actuation of Cantilevers for Picometre Amplitude Dynamic Force Microscopy

机译:悬臂的激光驱动,用于皮秒级振幅动态力显微镜

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As nanoscale and molecular devices become reality, the ability to probe materials on these scales is increasing in importance. To address this, we have developed a dynamic force microscopy technique where the flexure of the microcantilever is excited using an intensity modulated laser beam to achieve modulation on the picoscale. The flexure arises from thermally induced bending through differential expansion and the conservation of momentum when the photons are reflected and absorbed by the cantilever. In this study, we investigated the photothermal and photon pressure responses of monolithic and layered cantilevers using a modulated laser in air and immersed in water. The developed photon actuation technique is applied to the stretching of single polymer chains.
机译:随着纳米级和分子器件成为现实,探测这些规模的材料的能力越来越重要。为了解决这个问题,我们开发了一种动态力显微镜技术,其中使用强度调制的激光束激发微悬臂梁的挠曲,以实现皮秒级的调制。当光子被悬臂反射和吸收时,弯曲是由热膨胀引起的,该弯曲是通过微分膨胀和动量守恒产生的。在这项研究中,我们使用调制的激光在空气中并浸入水中研究了整体式和层状悬臂的光热和光子压力响应。发达的光子驱动技术被应用于单聚合物链的拉伸。

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