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The Importance of Edge Effects on the Intrinsic Loss Mechanisms of Graphene Nanoresonators

机译:边缘效应对石墨烯纳米谐振器固有损耗机理的重要性

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摘要

We utilize classical molecular dynamics simulations to Investigate the intrinsic loss mechanisms of monolayer graphene nanoresonators undergoing flexural oscillations. We find that spurious edge modes of vibration, which arise not due to externally applied stresses but intrinsically due to the different vibrational properties of edge atoms, are the dominant Intrinsic loss mechanism that reduces the quality (Q) factors. We additionally find that while hydrogen passivation of the free edges is ineffective in reducing the spurious edge modes, fixing the free edges Is critical to removing the spurious edge-induced vibrational states. Our atomistic simulations also show that the 0 factor degrades inversely proportional to temperature; furthermore, we also demonstrate that the Intrinsic losses can be reduced significantly across a range of operating temperatures through the application of tensile mechanical strain.
机译:我们利用经典的分子动力学模拟来研究经历弯曲振荡的单层石墨烯纳米谐振器的固有损耗机制。我们发现,不是由于外部施加的应力而是由于边缘原子的不同振动特性而固有地产生的虚假边缘振动模式是降低质量(Q)因子的主要本征损耗机制。我们还发现,虽然自由边缘的氢钝化在减少伪边缘模式方面无效,但固定自由边缘对于消除伪边缘引起的振动状态至关重要。我们的原子模拟也显示0因子与温度成反比地降低;此外,我们还证明,通过施加拉伸机械应变,可以在一定范围的工作温度下显着降低固有损耗。

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