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Increasing the Q factor in the constant-excitation mode of frequency-modulation atomic force microscopy in liquid

机译:液体中频率调制原子力显微镜的恒定激发模式下的Q值增加

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摘要

By adding a Q-control electronics to the setup of the constant-excitation mode of the frequency-modulation atomic force microscope, the authors are able to increase the effective Q factor of a self-oscillated cantilever in liquid to values comparable to ambient conditions. During imaging of soft biological samples adsorbed on a mica substrate, the authors observed an increased corrugation of the topography with increased Q factors. This effect is caused by the reduction of tip-sample indentation forces as demonstrated by numerical simulations and an analytical approach.
机译:通过在调频原子力显微镜的恒定激励模式中添加Q控制电子器件,作者能够将液体中自激振荡的悬臂梁的有效Q系数提高到与环境条件相当的值。在对吸附在云母基底上的软生物样品进行成像的过程中,作者观察到地形起伏随着Q因子的增加而增加。数值模拟和分析方法表明,这种影响是由于针尖样品压痕力的降低所致。

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