Czerniuk T, Brüggemann C, Tepper J, Brodbeck S, Schneider C, Kamp M, Höfling S, Glavin B A, Yakovlev D R, Akimov A V, Bayer M
Experimentelle Physik 2, TU Dortmund, Dortmund 44227, Germany.
Technische Physik, Physikalisches Institut and Wilhelm Conrad Röntgen-Center for Complex Material Systems, University of Würzburg, Am Hubland, Würzburg 97074, Germany.
Nat Commun. 2014 Jul 10;5:4038. doi: 10.1038/ncomms5038.
Planar microcavities with distributed Bragg reflectors (DBRs) host, besides confined optical modes, also mechanical resonances due to stop bands in the phonon dispersion relation of the DBRs. These resonances have frequencies in the 10- to 100-GHz range, depending on the resonator's optical wavelength, with quality factors exceeding 1,000. The interaction of photons and phonons in such optomechanical systems can be drastically enhanced, opening a new route towards the manipulation of light. Here we implemented active semiconducting layers into the microcavity to obtain a vertical-cavity surface-emitting laser (VCSEL). Thereby, three resonant excitations--photons, phonons and electrons--can interact strongly with each other providing modulation of the VCSEL laser emission: a picosecond strain pulse injected into the VCSEL excites long-living mechanical resonances therein. As a result, modulation of the lasing intensity at frequencies up to 40 GHz is observed. From these findings, prospective applications of active optomechanical resonators integrated into nanophotonic circuits may emerge.
具有分布式布拉格反射器(DBR)的平面微腔,除了受限光学模式外,由于DBR声子色散关系中的禁带,还存在机械共振。这些共振频率在10至100 GHz范围内,具体取决于谐振器的光学波长,品质因数超过1000。在这种光机械系统中,光子与声子的相互作用可以显著增强,为光的操控开辟了一条新途径。在这里,我们将有源半导体层集成到微腔中,以获得垂直腔面发射激光器(VCSEL)。由此,光子、声子和电子这三种共振激发可以强烈相互作用,实现VCSEL激光发射的调制:注入到VCSEL中的皮秒应变脉冲会激发其中寿命较长的机械共振。结果,观察到了高达40 GHz频率下的激光强度调制。基于这些发现,集成到纳米光子电路中的有源光机械谐振器可能会出现一些潜在应用。