首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2014 >EIGENVALUE VEERING IN QUARTZ TUNING FORK SENSORS AND ITS EFFECT ON DYNAMIC ATOMIC FORCE MICROSCOPY
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EIGENVALUE VEERING IN QUARTZ TUNING FORK SENSORS AND ITS EFFECT ON DYNAMIC ATOMIC FORCE MICROSCOPY

机译:石英音叉传感器的特征值转换及其对动态原子力显微镜的影响

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Quartz tuning fork (QTF) sensors offer an attractive alternative to traditional silicon microcantilevers for sensing applications in dynamic atomic force microscopy (DAFM). The QTF sensor consists of two identical, weakly-coupled tines with a sharp tip affixed to the distal end of one tine. The fundamental anti-phase mode of the QTF achieves a stable resonant frequency with a high Quality factor making it ideal for DAFM applications in which a small shift in the resonant frequency is linked to a tip-sample force. The addition of the tip-sample force also breaks the symmetry of the QTF leading to a classic eigenvalue veering scenario. The eigenvalue veering and accompanying mode localization phenomena violate the standard DAFM modeling assumptions which treat the addition of the tip-sample force as a small perturbation to a single-degree-of-freedom oscillator. We find that the eigenvalue veering can contribute a systematic error in force measurements on the order of 20%. Methodology for correcting the systematic error caused by eigenvalue veering is proposed.
机译:石英音叉(QTF)传感器为传统的硅微悬臂梁提供了一种有吸引力的替代方案,用于动态原子力显微镜(DAFM)的传感应用。 QTF传感器由两个相同的,弱耦合的尖齿组成,尖锐的尖端固定在一个尖齿的远端。 QTF的基本反相模式可实现具有高品质因数的稳定谐振频率,使其成为DAFM应用的理想选择,在DAFM应用中,谐振频率的微小偏移与尖端采样力相关。尖端采样力的增加也破坏了QTF的对称性,从而导致经典的特征值转向方案。特征值偏移和伴随模式定位现象违反了标准DAFM建模假设,该假设将尖端采样力的增加视为对单自由度振荡器的微小扰动。我们发现,特征值偏差可以在力测量中造成系统误差,约为20%。提出了一种修正因特征值偏移引起的系统误差的方法。

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