论文标题
在内部共振时,能量转移到耦合机电模式的周期型状态
Energy Transfer into Period-Tripled States in Coupled Electromechanical Modes at Internal Resonance
论文作者
论文摘要
有效的能量转移通常在谐振器中的振荡模式调整为内部共振时发生。我们设计了机电谐振器的两个振动模式的本征频率接近3:1的比率,并证明提供给上层模式的能量可以可控制地传输到较低模式。随着较低模式的振动,周期的振动是上层模式的两倍,因此周期驱动器施加的离散时间翻译对称性被损坏。较低的模式定居在具有不同相的三个稳定周期tripled状态之一中。可以在不更改系统参数的情况下打开或关闭此通道从上层模式转移。当上层模式本身在强共振或参数驱动器下变为多稳定性时,在较低模式下出现了其他共存的周期性三级状态。在后一种情况下,我们总共测量了6个具有相同振幅的共存振动状态,但阶段却不同$π$/3。具有三个不同阶段的共存状态激发可以为基于三元逻辑设计机械记忆的新机会。带有周期态状态的耦合谐振器也可以用于模拟具有自旋等于一个的复杂交互系统。
Efficient energy transfer often occurs between oscillation modes in a resonator when they are tuned to internal resonance. We design the eigenfrequencies of two vibrational modes of an electromechanical resonator to be close to a ratio of 3:1 and demonstrate that the energy supplied to the upper mode can be controllably transferred to the lower mode. With the lower mode vibrating with a period tripled that of the upper mode, the discrete time-translation symmetry imposed by the periodic drive is broken. The lower mode settles into one of three stable period-tripled states with different phases. This channel for energy transfer from the upper mode can be turned on or off without changing system parameters. When the upper mode itself becomes multistable under strong resonant or parametric drive, additional sets of coexisting period-tripled states emerge in the lower mode. In the latter case, we measure a total of 6 coexisting vibration states with identical amplitude but phases differing by $π$/3. Excitation of coexisting states with three different phases could open new opportunities in designing mechanical memory based on ternary logic. Coupled resonators with period-tripled states can also be used to model complex interacting systems with spin equals one.