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Atomic layer MoS2-graphene van der Waals heterostructure nanomechanical resonators

机译:原子层MoS2-graphene范德瓦耳斯异质结构纳米机械谐振器

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Heterostructures play significant roles in modern semiconductor devices and micro/nanosystems in a plethora of applications in electronics, optoelectronics, and transducers. While state-of-the-art heterostructures often involve stacks of crystalline epi-layers each down to a few nanometers thick, the intriguing limit would be hetero-atomic-layer structures. Here we report the first experimental demonstration of freestanding van der Waals heterostructures and their functional nanomechanical devices. By stacking single-layer (1L) MoS2 on top of suspended single-, bi-, tri- and four-layer (1L to 4L) graphene sheets, we realize an array of MoS2-graphene heterostructures with varying thickness and size. These heterostructures all exhibit robust nanomechanical resonances in the very high frequency (VHF) band (up to similar to 100 MHz). We observe that fundamental-mode resonance frequencies of the heterostructure devices fall between the values of graphene and MoS2 devices. Quality (Q) factors of heterostructure resonators are lower than those of graphene but comparable to those of MoS2 devices, suggesting interface damping related to interlayer interactions in the van der Waals heterostructures. This study validates suspended atomic layer heterostructures as an effective device platform and provides opportunities for exploiting mechanically coupled effects and interlayer interactions in such devices.
机译:异质结构在现代发挥着重要的作用半导体器件和微/纳米系统大量应用在电子技术中,光电,传感器。最先进的异质结构通常涉及成堆的水晶epi-layers每个下一个几纳米厚,有趣的限制是hetero-atomic-layer结构。第一个实验演示独立式的范德瓦耳斯异质结构其功能纳米机械设备。叠加单层二硫化钼的顶部(1升)暂停单,双,三,但是(1 l4 l)石墨烯薄片,我们意识到一个数组MoS2-graphene异质结构不同厚度和尺寸。表现出强劲的纳米机械共振甚高频(VHF)乐队(类似100 MHz)。异质结构的共振频率设备与石墨烯的值下降二硫化钼设备。异质结构谐振器是低于但与那些的二硫化钼的石墨烯相关设备,显示界面阻尼层间范德华相互作用异质结构。原子层异质结构作为一个有效的设备平台,提供了机会利用机械耦合效应和层间的相互作用在这样的设备。

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