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MASS SENSING: WITH RESONATING ULTRATHIN DOUBLE BEAMS

机译:大规模传感:通过共振超薄双梁

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This paper reports on mass sensing with 33-nm-thick single crystalline cantilevers by a double-beam laser Doppler vibrometer. The resonant frequency of an oscillating thin cantilever beam is very sensitive to a loaded mass. However, the drift of the resonance, due to gas adsorption and mechanical instability, limits the minimum detectable mass in general. Two cantilevers for sensing and its reference will be compensate their influences. Two cantilevers were self-oscillated by electrostatic actuation at a different resonant frequency. On the end of one cantilever, a 10-pico-g sample (a particle of organosilieon monomer) was mounted, and thennogravimetry of the sample using the two cantilevers was demonstrated. The cantilevers were heated up by a heater in vacuum, and the mass change was detected from the change of its resonant frequency. Exact temperature change can be estimated from the resonant frequency change of the reference cantilever. The derivative of the frequency change, corresponding to desorbed mass, clearly shows a peak at about 370°C.
机译:本文通过双梁激光多普勒振动计报道了用33nm厚的单晶悬臂的质量检测。振荡薄悬臂梁的谐振频率对负载质量非常敏感。然而,由于气体吸附和机械不稳定,共振的漂移限制了最小可检测物质。用于传感的两个悬臂和其参考将补偿其影响。通过不同的谐振频率静电致动是自振荡的两个悬臂。在一个悬臂的末端,安装了10-pico-g样品(有机硅蛋白单体的颗粒),并证明了使用两种悬臂的样品的Nogravimetry。悬臂用加热器在真空中加热,并从谐振频率的变化中检测质量变化。可以从参考悬臂的谐振频率变化估计精确的温度变化。对应于解吸质量的频率变化的衍生物清楚地显示出约370℃的峰。

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