School of Physics, The University of New South Wales, Sydney NSW 2052, Australia.
School of Mathematics and Statistics, The University of New South Wales, Sydney NSW 2052, Australia.
Phys Rev E. 2016 Feb;93(2):022137. doi: 10.1103/PhysRevE.93.022137. Epub 2016 Feb 24.
We investigate the dynamics of high-aspect-ratio nanowires trapped axially in a single gradient force optical tweezers. A power spectrum analysis of the dynamics reveals a broad spectral resonance of the order of kHz with peak properties that are strongly dependent on the input trapping power. A dynamical model incorporating linear restoring optical forces, a nonconservative asymmetric coupling between translational and rotational degrees of freedom, viscous drag, and white noise provides an excellent fit to experimental observations. A persistent low-frequency cyclical motion around the equilibrium trapping position, with a frequency distinct from the spectral resonance, is observed from the time series data.
我们研究了被单个梯度力光镊轴向捕获的高纵横比纳米线的动力学。对动力学的功率谱分析显示出一个 kHz 量级的宽谱共振,其峰值特性强烈依赖于输入捕获功率。一个包含线性恢复光学力、平移和旋转自由度之间非保守非对称耦合、粘性阻力和白噪声的动力学模型与实验观察结果非常吻合。从时间序列数据中观察到,在平衡捕获位置周围存在一种持续的低频周期性运动,其频率与谱共振不同。