Allain Pierre Etienne, Guha Biswarup, Baker Christophe, Parrain David, Lemaître Aristide, Leo Giuseppe, Favero Ivan
Matériaux et Phénomènes Quantiques, Université de Paris, CNRS UMR 7162, 10 rue Alice Domon et Léonie Duquet 75013 Paris, France.
Centre de Nanosciences et Nanotechnologies, CNRS UMR 9001, Université Paris-Saclay, 91120 Palaiseau, France.
Phys Rev Lett. 2021 Jun 18;126(24):243901. doi: 10.1103/PhysRevLett.126.243901.
In semiconductor nano-optomechanical resonators, several forms of light-matter interaction can enrich the canonical radiation pressure coupling of light and mechanical motion and give rise to new dynamical regimes. Here, we observe an electro-optomechanical modulation instability in a gallium arsenide disk resonator. The regime is evidenced by the concomitant formation of regular and dense combs in the radio-frequency and optical spectrums of the resonator associated with a permanent pulsatory dynamics of the mechanical motion and optical intensity. The mutual coupling between light, mechanical oscillations, carriers, and heat, notably through photothermal interactions, stabilizes an extended mechanical comb in the ultrahigh frequency range that can be controlled optically.
在半导体纳米光机械谐振器中,几种光与物质相互作用的形式可以丰富光与机械运动的规范辐射压力耦合,并产生新的动力学机制。在此,我们在砷化镓盘式谐振器中观测到一种电光机械调制不稳定性。这种机制通过谐振器射频和光谱中规则且密集梳状结构的同时形成得以证明,这些梳状结构与机械运动和光强的永久脉动动力学相关。光、机械振荡、载流子和热之间的相互耦合,尤其是通过光热相互作用,在超高频范围内稳定了一种可通过光学方式控制的扩展机械梳状结构。