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Manipulation of graphene's dynamic ripples by local harmonic out-of-plane excitation

机译:通过局部谐波面外激励来操纵石墨烯的动态波纹

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With use of carefully designed molecular dynamics simulations, we demonstrate tuning of dynamic ripples in free standing, thermally fluctuating graphene by applying a local out-of-plane sinusoidal excitation. The local dynamic morphology can be controlled via varying external modulation and the boundary conditions. We fully account for the discrete atomistic structure of graphene, as well as natural energy dissipation due in part to its remarkably high thermal conductivity. In addition to stable dynamic rippling patterns, we observed an unexpected flattening of graphene well below the thermal limit. Our results provide insight into the dynamic response of atomically thin layers to an external time-varying excitation in the presence of realistic thermal fluctuations and energy loss. This suggests intriguing possibilities for modulating the electrical and optical properties of atomically thin membranes via local dynamic morphology control.
机译:通过精心设计的分子动力学模拟,我们演示了通过应用局部平面外正弦激励来调节自由站立,热波动的石墨烯中的动态波纹。可以通过改变外部调制和边界条件来控制局部动态形态。我们充分考虑了石墨烯的离散原子结构以及自然能量耗散,这部分是由于其极高的热导率。除了稳定的动态波动模式,我们还观察到石墨烯的出乎意料的展平,远低于热极限。我们的结果提供了对在实际热波动和能量损失存在的情况下原子薄层对外部时变激励的动态响应的了解。这暗示了通过局部动态形态学控制来调节原子薄膜的电学和光学性质的有趣可能性。

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