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Hydrodynamic methods for calibrating the normal spring constant of microcantilevers

机译:校准微悬臂梁正常弹簧常数的流体力学方法

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Knowledge of the spring constants of microcantilevers is vital in atomic force microscopy and for cantilever-based devices that are, for example, employed as probes in biomedical applications. We compare two recently developed hydrodynamic methods for the determination of the normal spring constant of microcantilevers. Both approaches are non-invasive when determining the spring constant and require only knowledge of the thermal noise response of the cantilever in a fluid and its plan view dimensions. The methods do not bear the risk of damaging the cantilever and are therefore attractive for example in mass sensing applications in cases where the cantilever has been modified, e. g. with a coating. The specific strengths of the methods are discussed and the results for a variety of cantilevers are presented and compared.
机译:对微悬臂梁的弹簧常数的了解对于原子力显微镜以及例如在生物医学应用中用作探针的基于悬臂的设备至关重要。我们比较了两种最新开发的确定微悬臂梁正常弹簧常数的流体动力学方法。两种方法在确定弹簧常数时都是非侵入性的,并且仅需要了解悬臂在流体中的热噪声响应及其平面图尺寸。该方法不承担损坏悬臂的风险,因此例如在悬臂已被修改的情况下例如在质量感测应用中是有吸引力的。 G。涂层。讨论了该方法的具体优势,并提出并比较了各种悬臂梁的结果。

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