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Wideband low-noise optical beam deflection sensor with photothermal excitation for liquid-environment atomic force microscopy

机译:宽带低噪声光束偏转传感器,具有光热激发,用于液体环境原子力显微镜

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摘要

I developed a wideband low-noise optical beam deflection sensor with a photothermal cantilever excitation system for liquid-environment atomic force microscopy. The developed sensor has a 10 MHz bandwidth and 4.7 fm/Hz deflection noise density in water. The theoretically limited noise performance (i.e., the noise level limited only by the photodiode shot noise) has been achieved in liquid for the first time. Owing to the wide bandwidth and the replaceable focus lens design, the sensor is applicable to cantilevers with various dimensions. The deflection noise densities of less than 7.8 fm/Hz have been achieved in water for cantilevers with lengths from 35 to 125 μm. The ideal amplitude and phase versus frequency curves without distortion are obtained with the developed photothermal excitation system. The excitation system is applicable to relatively stiff cantilevers (>20 N/m) in liquid, making it possible to obtain true atomic-resolution images in liquid. True atomic-resolution imaging of mica in water is demonstrated using the developed deflection sensor and the photothermal excitation system. © 2009 American Institute of Physics.
机译:我开发了一种带光热悬臂激发系统的宽带低噪声光束偏转传感器,用于液体环境原子力显微镜。开发的传感器在水中具有10 MHz的带宽和4.7 fm / Hz的偏转噪声密度。理论上有限的噪声性能(即仅受光电二极管散粒噪声限制的噪声水平)已首次在液体中实现。由于具有宽带宽和可更换的聚焦透镜设计,该传感器适用于各种尺寸的悬臂。在水中,对于长度为35至125μm的悬臂,偏转噪声密度小于7.8 fm / Hz。利用开发的光热激发系统可以获得理想的幅度和相位相对于频率的曲线,且没有失真。该激发系统适用于液体中相对较硬的悬臂(> 20 N / m),从而有可能获得液体中真实的原子分辨率图像。使用开发的偏转传感器和光热激发系统演示了水中云母的真实原子分辨率成像。 ©2009美国物理研究所。

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    Fukuma, Takeshi;

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  • 年度 2009
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