首页> 外文会议>2015 Joint Conference of the IEEE International Frequency Control Symposium amp; European Frequency and Time Forum >Calibrating temperature coefficient of frequency (TCf) and thermal expansion coefficient (α) of MoS2 nanomechanical resonators
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Calibrating temperature coefficient of frequency (TCf) and thermal expansion coefficient (α) of MoS2 nanomechanical resonators

机译:MoS 2 纳米机械谐振器的频率温度系数(TCf)和热膨胀系数(α)的校准

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摘要

We report on experimental study and calibration of temperature coefficient of frequency (TCf) and laser heating effect in two-dimensional (2D) resonators, and through which, a new method for determining thermal expansion coefficient (α) in 2D crystals. We measure the resonance characteristics of the `drumhead' nanomechanical resonators based on molybdenum disulfide (MoS) using sensitive laser interferometry. By tracking the resonance frequency at varying temperatures, we obtain high TCf up to -0.396%/K. Combining with finite element modeling (FEM), we extract α of 3.7-4ppm/K. We also measure the laser power dependence of the resonance frequency (up to -4.116%/mW), demonstrating the potential of this type of devices for sensitive thermometers and laser power meters.
机译:我们报告了在二维(2D)谐振器中的频率温度系数(TCf)和激光加热效应的实验研究和校准,并据此确定了二维晶体热膨胀系数(α)的新方法。我们使用敏感的激光干涉仪测量基于二硫化钼(MoS)的“鼓皮”纳米机械谐振器的谐振特性。通过跟踪在不同温度下的谐振频率,我们可以获得高达-0.396%/ K的高TCf。结合有限元建模(FEM),我们提取出3.7-4ppm / K的α。我们还测量了谐振频率对激光功率的依赖性(高达-4.116%/ mW),证明了此类设备在敏感温度计和激光功率计中的潜力。

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