Li Wei-Jie, Cheng Ze-Di, Kang Li-Zhi, Zhang Rui-Ming, Fan Bo-Yu, Zhou Qiang, Wang You, Song Hai-Zhi, Arutyunov Konstantin Yu, Niu Xiao-Bin, Deng Guang-Wei
Opt Express. 2021 May 24;29(11):16241-16248. doi: 10.1364/OE.423904.
Graphene has been considered as one of the best materials to implement mechanical resonators due to their excellent properties such as low mass, high quality factors and tunable resonant frequencies. Here we report the observation of phonon lasing induced by the photonthermal pressure in a few-layer graphene resonator at room temperature, where the graphene resonator and the silicon substrate form an optical cavity. A marked threshold in the oscillation amplitude and a narrowing linewidth of the vibration mode are observed, which confirms a phonon lasing process in the graphene resonator. Our findings will stimulate the studies on phononic phenomena, help to establish new functional devices based on graphene mechanical resonators, and might find potential applications in classical and quantum sensing fields, as well as in information processing.
由于石墨烯具有诸如低质量、高品质因数和可调谐共振频率等优异特性,它被认为是实现机械谐振器的最佳材料之一。在此,我们报告了在室温下,在几层石墨烯谐振器中由光热压力诱导的声子激光发射的观测结果,其中石墨烯谐振器和硅衬底形成一个光学腔。观测到了振荡幅度的明显阈值和振动模式线宽的变窄,这证实了石墨烯谐振器中的声子激光发射过程。我们的发现将激发对声子现象的研究,有助于基于石墨烯机械谐振器建立新的功能器件,并可能在经典和量子传感领域以及信息处理中找到潜在应用。