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Superposed oscillation in force calibrations driven by triangular-wave in optical tweezers system

机译:镊子系统中由三角波驱动的力校准中的叠加振荡

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In force calibration, when triangular-wave input is exerted on the piezoelectric-driven substage, there is a damped oscillation superposed on the square-wave movement of the trapped bead in our experiments. This will bring about instability for well trapping bead and become the noise source of the bead signal. Consequently, the superposed vibration will influence the precision and the range of force that can be calibrated, In order to analyze derivation of the oscillation and solve it, a model of equivalent oscillator is put forward. Based on this model, we calculate the initial amplitude of oscillation and frequency spectra of the movement of trapped bead, which is well in agreement with the experimental one. We apply sinusoidal-wave input substituted for triangular one to the substage, as a result, oscillation disturbance is avoided effectively, so the trapping stability of optical trap increases and the range of calibrated force has been extended greatly.
机译:在力校准中,在我们的实验中,当三角波输入施加在压电驱动的基台上时,在捕获的磁珠的方波运动上叠加了阻尼振荡。这将导致阱捕获磁珠的不稳定,并成为磁珠信号的噪声源。因此,叠加的振动会影响精度和可校准的力的范围,为分析振荡的导数并加以解决,提出了等效振荡器的模型。在此模型的基础上,我们计算了振动的初始振幅和被困磁珠运动的频谱,这与实验结果非常吻合。我们在子级应用正弦波输入代替三角波输入,从而有效地避免了振荡扰动,从而提高了光阱的俘获稳定性,并大大扩大了标定力的范围。

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