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Evaluating signal and noise spectral density of a qPlus sensor with an active feedback control

机译:具有有源反馈控制的Qplus传感器的信号和噪声谱密度

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摘要

Q-control technique enables to actively change the quality factor of the probe oscillation in dynamic atomic force microscopy. The Q-control is realized by adding a self-feedback loop into the original actuation-detection system, in which a damping force with controllable damping coefficient in magnitude and sign is applied to the oscillating probe. While the applied force alters the total damping interaction and thus the overall ‘signal’ of the probe motion, the added feedback system changes the ‘noise’ of the motion as well. Here, we systematically investigate the signal, the noise, and the signal-to-noise ratio of the qPlus sensor under the active Q-control. We quantify the noise of the qPlus motion by measuring the noise spectral density, which is reproduced by a harmonic oscillator model including the thermal and the measurement noises. We show that the noise signal increases with the quality factor controlled, scaling as the square root of the quality factor. Because the overall signal is linearly proportional to the quality factor, the signal-to-noise ratio scales as the square root of the quality factor. The Q-controlled qPlus with a highly enhanced Q, up to 10,000 in air, leads to the minimum detectable force gradient of 0.001 N/m, which would enhance the capability of the qPlus sensor for atomic force microscopy and spectroscopy.
机译:Q控制技术使能够在动态原子力显微镜中主动改变探针振荡的质量因数。通过将自助反馈回路添加到原始致动检测系统中来实现Q-控制,其中幅度和符号的可控阻尼系数的阻尼力被施加到振荡探针。虽然所施加的力改变了总阻尼相互作用,因此探测器的总体“信号”,但附加的反馈系统也会改变运动的“噪声”。这里,我们系统地研究了Active Q-Control下Qplus传感器的信号,噪声和信噪比。我们通过测量噪声光谱密度来量化Qplus运动的噪声,该噪声光谱密度由包括热和测量噪声的谐振子模型再现。我们表明,噪声信号随着质量因子控制而增加,缩放为质量因数的平方根。因为整体信号与质量因数线性成比例,所以信噪比为质量因数的平方根。具有高度增强型Q的Q控制Qplus,空气中高达10,000,导致最小可检测力梯度为0.001n / m,这将增强Qplus传感器的原子力显微镜和光谱的能力。

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