Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Nano Lett. 2010 May 12;10(5):1793-8. doi: 10.1021/nl100480y.
A nanomechanical resonator incorporating intrinsically geometric nonlinearity and operated in a highly nonlinear regime is modeled and developed. The nanoresonator is capable of extreme broadband resonance, with tunable resonance bandwidth up to many times its natural frequency. Its resonance bandwidth and drop frequency (the upper jump-down frequency) are found to be very sensitive to added mass and energy dissipation due to damping. We demonstrate a prototype nonlinear mechanical nanoresonator integrating a doubly clamped carbon nanotube and show its broadband resonance over tens of MHz (over 3 times its natural resonance frequency) and its sensitivity to femtogram added mass at room temperature.
设计并研制了一种包含固有几何非线性并在高度非线性区域工作的纳米机械谐振器。该纳米谐振器能够实现极宽的带宽共振,可调谐的带宽高达其固有频率的许多倍。发现由于阻尼导致的附加质量和能量耗散对其带宽和下降频率(上限下降频率)非常敏感。我们展示了一个集成了双端固支碳纳米管的非线性机械纳米谐振器原型,并在室温下展示了其数十兆赫兹(超过其固有谐振频率的 3 倍)的宽带共振及其对飞克级附加质量的灵敏度。