论文标题

用低损坏的石英散装声波在低温温度下探测石墨烯的声学损失

Probing the acoustic losses of graphene with a low-loss quartz bulk-acoustic-wave resonator at cryogenic temperatures

论文作者

Galliou, Serge, Bon, Jérémy, Abbé, Philippe, Vicarini, Rémy, Tobar, Michael E., Goryachev, Maxim

论文摘要

我们观察到沉积在石英晶体底物上的剥落石墨烯单层的机械效应,该晶体旨在在液体温度下作为极低的底部散装量 - 大声波腔,这是通过感知三种厚度的scut scut optional of the ot s sareeal模式的三种厚度特征模式来实现的。 切。从质量因子测量值中,在最佳情况下,在4 K时,评估粘合石墨烯单层的机械损失约为8 x 10-4。因此,它们的明显大于已经报道的悬浮膜的人,但也用于在扭转模式下运行的SIO2/SI基板上的粘附层。实际上,结果表明,由于因子7的粗糙度降解而发生表面散射。此外,此处介绍的机械损失也位于提交给热力学应力的设备的背景下,但不是唯一存在的机械损耗。其中一些可能是与石墨烯层沉积过程有关的内在固有的。基于适用于应力不同的三种厚度模式的力频率理论,证明这种应力效应实际上与质量负载的效应纠缠在一起,可以调和实验结果。

We observe mechanical effects of an exfoliated graphene monolayer deposited on a quartz crystal substrate designed to operate as an extremely low-loss bulk-acoustic-wave cavity at liquid-helium temperature.This is achieved by sensing overtones of the three thickness eigen-modes of the so-called SC-cut, since all three modes, two shear mode and one extensional mode, can be electrically probed with such a crystal cut. From quality-factor measurements, the mechanical losses of the adhesive graphene monolayer are assessed to be about 8 x 10-4 at 4 K in the best case. They are therefore significantly greater than those already reported for suspended membranes but also for adherent layers on SiO2/Si substrates operating in torsional modes. In fact, results reveal that surface scattering occurs due to a roughness degradation of a factor 7. In addition, the mechanical losses presented here are also placed in the context of a device submitted to thermomechanical stresses, but which are not the only ones existing. Some of them could be intrinsic ones related to the deposition process of the graphene layer. Based on a force-frequency theory applied to the three thickness modes which react differently to stresses, it is demonstrated that this stress effect actually entangled with that of mass loading reconciles the experimental results.

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