论文标题
非抗碘振动或电泳激发(零时间平均)引起的净运动
Net motion induced by nonantiperiodic vibratory or electrophoretic excitations with zero time average
论文作者
论文摘要
众所周知,使用零时间平均值但时间不对称的振动激发的应用可以产生净漂移。迄今为止,这种时间对称性断裂和净漂移主要是在点粒子,非线性光学和量子系统的背景下进行的。在这里,我们提出了两个新的实验系统,可以通过宏观对象的机械运动容易观察到时间不对称力的激发的影响:(1)固体厘米尺度对象放在均匀的平面表面上,以侧面振动,(2)在平行电极之间使用带有电动型电势的电力电极之间的电荷胶体颗粒。在这两种情况下,净运动都在实验和数值上都可以通过非抗二极管,两种模式,正弦曲线观察到,其中频率模式是奇数和偶数数字的比率(例如,2 Hz和3 Hz)。对于相同的施加波形,观察到的运动方向总是相同的,并且可以通过更改所施加波形的符号(例如通过交换哪个电极供电和接地)来逆转。我们将这些结果扩展到其他非线性机械系统,并讨论了使用可调周期驱动力对物体运动的轻松控制的含义。
It is well established that application of an oscillatory excitation with zero time-average but temporal asymmetry can yield net drift. To date this temporal symmetry breaking and net drift has been explored primarily in the context of point particles, nonlinear optics, and quantum systems. Here, we present two new experimental systems where the impact of temporally asymmetric force excitations can be readily observed with mechanical motion of macroscopic objects: (1) solid centimeter-scale objects placed on a uniform flat surface made to vibrate laterally, and (2) charged colloidal particles in water placed between parallel electrodes with an applied oscillatory electric potential. In both cases, net motion is observed both experimentally and numerically with nonantiperiodic, two-mode, sinusoids where the frequency modes are the ratio of odd and even numbers (e.g., 2 Hz and 3 Hz). The observed direction of motion is always the same for the same applied waveform, and is readily reversed by changing the sign of the applied waveform, for example, by swapping which electrode is powered and grounded. We extend these results to other nonlinear mechanical systems, and we discuss the implications for facile control of object motion using tunable periodic driving forces.