She Yumei, Li Cheng, Lan Tian, Peng Xiaobin, Liu Qianwen, Fan Shangchun
School of Instrumentation Science and Opto-electronics Engineering, Beihang University, Beijing 100191, China.
Science and Technology on Metrology and Calibration Laboratory, Beijing 100095, China.
Nanomaterials (Basel). 2016 Sep 5;6(9):162. doi: 10.3390/nano6090162.
We demonstrated a multilayer molybdenum disulfide (MoS₂) nanomechanical resonator by using optical Fabry-Perot (F-P) interferometric excitation and detection. The thin circular MoS₂ nanomembrane with an approximate 8-nm thickness was transferred onto the endface of a ferrule with an inner diameter of 125 μm, which created a low finesse F-P interferometer with a cavity length of 39.92 μm. The effects of temperature and viscous air damping on resonance behavior of the resonator were investigated in the range of -10-80 °C. Along with the optomechanical behavior of the resonator in air, the measured resonance frequencies ranged from 36 kHz to 73 kHz with an extremely low inflection point at 20 °C, which conformed reasonably to those solved by previously obtained thermal expansion coefficients of MoS₂. Further, a maximum quality () factor of 1.35 for the resonator was observed at 0 °C due to viscous dissipation, in relation to the lower Knudsen number of 0.0025~0.0034 in the tested temperature range. Moreover, measurements of factor revealed little dependence of on resonance frequency and temperature. These measurements shed light on the mechanisms behind viscous air damping in MoS₂, graphene, and other 2D resonators.
我们通过光学法布里 - 珀罗(F - P)干涉激发和检测展示了一种多层二硫化钼(MoS₂)纳米机械谐振器。将厚度约为8纳米的薄圆形MoS₂纳米膜转移到内径为125微米的插芯端面上,这形成了一个腔长为39.92微米的低精细度F - P干涉仪。在 - 10至80°C范围内研究了温度和粘性空气阻尼对谐振器共振行为的影响。随着谐振器在空气中的光机械行为,测量得到的共振频率范围为36千赫兹至73千赫兹,在20°C时具有极低的拐点,这与先前获得的MoS₂热膨胀系数所求解的结果合理相符。此外,由于粘性耗散,在0°C时观察到谐振器的最大品质(Q)因数为1.35,这与测试温度范围内较低的克努森数0.0025至0.)0034有关。而且,对Q因数的测量表明Q对共振频率和温度的依赖性很小。这些测量揭示了MoS₂、石墨烯和其他二维谐振器中粘性空气阻尼背后的机制。