论文标题
可调的,光栅门控,二聚酰亚胺Terahertz调节剂
Tunable, grating-gated, graphene-on-polyimide terahertz modulators
论文作者
论文摘要
我们提出了具有可调式光学带宽的电气切换石墨烯Terahertz(THZ)调节器,并利用它来补偿量子级联激光器(QCL)的腔分散体。静电门是通过用作栅极电极的金属晶粒来实现的,顶部具有HFO2/Alox Gate介电。这是在聚酰亚胺层上图案的,该层充当四分之一波谐振腔,并与下面的AU反射器相结合。我们获得了强度的90%调制深度,并在1.9 _ 2.7 THz范围内结合20 kHz的电带宽。然后,我们将调制器与多模THZ QCL集成。通过调整调制器的操作带宽,我们证明了石墨烯调节器可以部分补偿QCL空腔分散体,从而使集成的激光器在激光器操作范围的35%以上,其表现为稳定的频率梳子,具有98均衡的光学模式,并具有〜1.2 thz的光谱覆盖率。这对于在Terahertz中的边界应用具有重要的潜力,作为可调转换 - 启示设备,主动光子组件,自适应和量子光学器件,以及作为THZ频率下光谱的指标工具。
We present an electrically switchable graphene terahertz (THz) modulator with a tunable-by-design optical bandwidth and we exploit it to compensate the cavity dispersion of a quantum cascade laser (QCL). Electrostatic gating is achieved by a metal-grating used as a gate electrode, with an HfO2/AlOx gate dielectric on top. This is patterned on a polyimide layer, which acts as a quarter wave resonance cavity, coupled with an Au reflector underneath. We get 90% modulation depth of the intensity, combined with a 20 kHz electrical bandwidth in the 1.9 _ 2.7 THz range. We then integrate our modulator with a multimode THz QCL. By adjusting the modulator operational bandwidth, we demonstrate that the graphene modulator can partially compensates the QCL cavity dispersion, resulting in an integrated laser behaving as a stable frequency comb over 35% of the laser operational range, with 98 equidistant optical modes and with a spectral coverage of ~ 1.2 THz. This has significant potential for frontier applications in the terahertz, as tunable transformation-optics devices, active photonic components, adaptive and quantum optics, and as a metrological tool for spectroscopy at THz frequencies.