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Oscillatory disturbance in force calibration of optical tweezers

机译:光镊力校准中的振荡干扰

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In the calibration of the optical trap stiffness, it is found that there appears an attenuating oscillation as an oscillatory disturbance added to the trapped bead movement, when the scanner is driven by a triangular wave input. An equivalent oscillator model is put forward to explain the mechanism of the oscillatory disturbance. Both the measurements and calculations show that the attenuating oscillation comes from the oscillation of the scanner and the triangular wave drive causes this additional oscillation of the scanner. Furthermore, the analysis indicates that the oscillatory disturbance will become stronger, when the stiffness of the trap increases or the natural frequency of the scanner decreases. We adopt another driving way, i.e. a sinusoidal wave input is used instead of the triangular wave input. Our experiment has verified that in this case the oscillatory disturbance is eliminated completely.
机译:在光阱刚度的校准中,发现当由三角波输入驱动扫描器时,会出现衰减振荡,这是由于增加了被捕获的磁珠运动而产生的振荡干扰。提出了等效的振荡器模型来解释振荡干扰的机理。测量和计算均表明,衰减振荡来自扫描仪的振荡,三角波驱动导致扫描仪的这种额外振荡。此外,分析表明,当阱的刚度增加或扫描仪的固有频率降低时,振荡干扰将变得更强。我们采用另一种驱动方式,即使用正弦波输入代替三角波输入。我们的实验已经证明,在这种情况下,振荡干扰得以完全消除。

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