Joo Hyo-Jun, Liu Jiawen, Chen Melvina, Burt Daniel, Chomet Baptiste, Kim Youngmin, Shi Xuncheng, Lu Kunze, Zhang Lin, Ikonic Zoran, Sohn Young-Ik, Tan Chuan Seng, Gacemi Djamal, Vasanelli Angela, Sirtori Carlo, Todorov Yanko, Nam Donguk
School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore, Singapore.
Laboratoire de Physique de l'Ecole Normale Supérieure, ENS, Université PSL, CNRS, Sorbonne Université, Université Paris Cité, Paris, France.
Nat Nanotechnol. 2024 Aug;19(8):1116-1121. doi: 10.1038/s41565-024-01662-w. Epub 2024 Apr 29.
Mechanical forces induced by high-speed oscillations provide an elegant way to dynamically alter the fundamental properties of materials such as refractive index, absorption coefficient and gain dynamics. Although the precise control of mechanical oscillation has been well developed in the past decades, the notion of dynamic mechanical forces has not been harnessed for developing tunable lasers. Here we demonstrate actively tunable mid-infrared laser action in group-IV nanomechanical oscillators with a compact form factor. A suspended GeSn cantilever nanobeam on a Si substrate is resonantly driven by radio-frequency waves. Electrically controlled mechanical oscillation induces elastic strain that periodically varies with time in the GeSn nanobeam, enabling actively tunable lasing emission at >2 μm wavelengths. By utilizing mechanical resonances in the radio frequency as a driving mechanism, this work presents wide-range mid-infrared tunable lasers with ultralow tuning power consumption.
高速振荡产生的机械力为动态改变材料的基本特性(如折射率、吸收系数和增益动力学)提供了一种巧妙的方法。尽管在过去几十年中,对机械振荡的精确控制已经得到了很好的发展,但动态机械力的概念尚未被用于开发可调谐激光器。在此,我们展示了具有紧凑外形的IV族纳米机械振荡器中的主动可调谐中红外激光作用。硅衬底上的悬浮锗锡悬臂纳米梁由射频波共振驱动。电控机械振荡在锗锡纳米梁中诱导出随时间周期性变化的弹性应变,从而能够在大于2μm波长处实现主动可调谐激光发射。通过利用射频中的机械共振作为驱动机制,这项工作展示了具有超低调谐功耗的宽范围中红外可调谐激光器。