Roshan Entezar Samad
Appl Opt. 2021 Sep 20;60(27):8445-8452. doi: 10.1364/AO.436170.
We investigate the nonlinear absorption properties of a defective one-dimensional photonic crystal at the near-infrared range using the nonlinear transfer matrix method. The defect is a nanocomposite layer containing vanadium dioxide nanoparticles sandwiched between two nonlinear dielectric layers. The linear absorption spectrum of the designed structure has three resonant absorption lines at the bandgap region of the photonic crystal. We can reconfigure the structure in the linear regime from nearly transparent to absorbent or vice versa in multiple resonant wavelengths by adjusting the temperature. Moreover, the system shows absorptive bistability by adjusting the intensity and incident angle of the input light. We discuss the tunability of the nonlinear absorption in detail. In the nonlinear regime, we show that, besides the temperature, the structure can be reconfigured from absorbent to transparent and vice versa by adjusting the incident optical power and the incident angle. We validate the results by examining the electric field distribution throughout the structure.
我们使用非线性传输矩阵方法研究了一种有缺陷的一维光子晶体在近红外波段的非线性吸收特性。该缺陷是夹在两个非线性介电层之间的包含二氧化钒纳米颗粒的纳米复合层。所设计结构的线性吸收光谱在光子晶体的带隙区域有三条共振吸收线。通过调节温度,我们可以在多个共振波长下将线性状态下的结构从几乎透明重新配置为吸收性的,反之亦然。此外,通过调节输入光的强度和入射角,该系统呈现出吸收双稳性。我们详细讨论了非线性吸收的可调性。在非线性状态下,我们表明,除了温度之外,通过调节入射光功率和入射角,结构可以从吸收性的重新配置为透明的,反之亦然。我们通过检查整个结构中的电场分布来验证结果。