Department of Physics, Boston University , 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States.
Nano Lett. 2013 Sep 11;13(9):4014-9. doi: 10.1021/nl401978p. Epub 2013 Aug 21.
We report the observation of nonlinear dissipation in diamond nanomechanical resonators measured by an ultrasensitive heterodyne down-mixing piezoresistive detection technique. The combination of a hybrid structure as well as symmetry breaking clamps enables sensitive piezoresistive detection of multiple orthogonal modes in a diamond resonator over a wide frequency and temperature range. Using this detection method, we observe the transition from purely linear dissipation at room temperature to strongly nonlinear dissipation at cryogenic temperatures. At high drive powers and below liquid nitrogen temperatures, the resonant structure dynamics follows the Pol-Duffing equation of motion. Instead of using the broadening of the full width at half-maximum, we propose a nonlinear dissipation backbone curve as a method to characterize the strength of nonlinear dissipation in devices with a nonlinear spring constant.
我们报告了在金刚石纳米机械谐振器中观察到的非线性耗散现象,该现象是通过超灵敏的外差下混压阻检测技术测量得到的。混合结构以及对称破缺夹具的组合使得在宽频率和温度范围内能够对金刚石谐振器中的多个正交模式进行灵敏的压阻检测。使用这种检测方法,我们观察到从室温下的纯线性耗散到低温下的强非线性耗散的转变。在高驱动功率和低于液氮温度的情况下,共振结构动力学遵循 Pol-Duffing 运动方程。我们提出了一种非线性耗散主曲线作为一种方法,用于表征具有非线性弹簧常数的器件中的非线性耗散强度,而不是使用半最大值全宽的展宽。