论文标题
使用可调耦合器和反设计结构的可重新配置的非线性光学元件
Reconfigurable nonlinear optical element using tunable couplers and inverse-designed structure
论文作者
论文摘要
近年来,基于波浪的模拟计算是通过人工设计的结构通过波传播实现的超快速和功率的信号处理的焦点。在这些结构的基础上,已经提出了各种建议,用于使用波浪进行计算。这些建议中的大多数都是针对线性操作的,例如矢量 - 矩阵乘法。电磁材料的弱且几乎无法控制的非线性响应在基于波浪的实施非线性操作的设计中构成了挑战。在目前的工作中,首先,通过使用逆设计方法,我们提出了一个三端口设备,该设备由线性和Kerr非线性材料组成,表现出所需的功率依赖性传输属性。然后,将此类设备的适当布置与Mach-Zhhnder干涉仪(MZIS)的集合相结合,我们提出了一个可重新配置的非线性光学架构,能够实现输入信号的各种非线性函数。所提出的设备可以为基于波浪的可重构非线性信号处理铺平道路,该过程可以与线性网络结合使用,以进行全面的波浪模拟计算。
In recent years, wave-based analog computing has been at the center of attention for providing ultra-fast and power-efficient signal processing enabled by wave propagation through artificially engineered structures. Building on these structures, various proposals have been put forward for performing computations with waves. Most of these proposals have been aimed at linear operations, such as vector-matrix multiplications. The weak and hardly controllable nonlinear response of electromagnetic materials imposes challenges in the design of wave-based structures for performing nonlinear operations. In the present work, first, by using the method of inverse design we propose a three-port device, which consists of a combination of linear and Kerr nonlinear materials, exhibiting the desired power-dependent transmission properties. Then, combining a proper arrangement of such devices with a collection of Mach-Zehnder interferometers (MZIs), we propose a reconfigurable nonlinear optical architecture capable of implementing a variety of nonlinear functions of the input signal. The proposed device may pave the way for wave-based reconfigurable nonlinear signal processing that can be combined with linear networks for full-fledged wave-based analog computing.