论文标题
用可调无序的非热层来控制波前形状和传播时间
Controlling wave-front shape and propagation time with tunable disordered non-Hermitian multilayers
论文作者
论文摘要
非热光子系统的独特而灵活的特性,通过提供一大堆新型的光学效果并允许对纳米和显微镜的有效调整轻相互作用,从而引起人们的注意。加上对快速和空间紧凑的光管理方法的需求不断增长,这种特殊的方法为新颖的光学应用铺平了广泛的途径。在这里,我们统一了无序的超材料和非热光子学的方法,我们提出了一个在概念上是由无序损失的多层驱动的概念上新的,简单的结构,因此,为控制通行时间和不同切换时间的行动范围内的波动时间和波浪形状提供了强大的工具。在绝热升高波阵线的情况下,我们首次通过改变障碍的水平来表明打开和关闭扭结形成的可能性。同时,我们通过使用损失和增益饱和的非线性效应来提供输出强度的柔性调整。由于我们系统中的混乱强度可以通过外部泵的功率方便地控制,因此我们的方法可以视为不同主动光子设备的基础。
Unique and flexible properties of non-Hermitian photonic systems attract ever-increasing attention via delivering a whole bunch of novel optical effects and allowing for efficient tuning light-matter interactions on nano- and microscales. Together with an increasing demand for the fast and spatially compact methods of light governing, this peculiar approach paves a broad avenue to novel optical applications. Here, unifying the approaches of disordered metamaterials and non-Hermitian photonics, we propose a conceptually new and simple architecture driven by disordered loss-gain multilayers and, therefore, providing a powerful tool to control both the passage time and the wave-front shape of incident light with different switching times. For the first time we show the possibility to switch on and off kink formation by changing the level of disorder in the case of adiabatically raising wave fronts. At the same time, we deliver flexible tuning of the output intensity by using the nonlinear effect of loss and gain saturation. Since the disorder strength in our system can be conveniently controlled with the power of the external pump, our approach can be considered as a basis for different active photonic devices.