论文标题
基于梯度的光学涡流束发射器的优化
Gradient-Based Optimization of Optical Vortex Beam Emitters
论文作者
论文摘要
涡流梁是麦克斯韦方程的稳定解,具有相位奇异性和轨道角动量,独特的特性,在基本科学,光学通信和量子技术中引起许多应用。涡流发射器的可扩展集成和制造将使这些应用程序蓬勃发展,并通过传统光学器件不可能实现新的应用。在这里,我们提出了一个通用框架,以使用光子逆设计生成集成的涡流发射器。我们在实验上证明了跨角动量的生成-3 $ \ hbar $至3 $ \ hbar $。我们通过设计一个能够激发自定义涡流光纤的涡旋束多路复用器来展示此设计过程的普遍性。最后,我们生产具有宽带宽度和高效率的铸造式光束发射器,利用多层异质整合。
Vortex beams are stable solutions of Maxwell's equations that carry phase singularities and orbital angular momentum, unique properties that give rise to many applications in the basic sciences, optical communications, and quantum technologies. Scalable integration and fabrication of vortex beam emitters will allow these applications to flourish and enable new applications not possible with traditional optics. Here we present a general framework to generate integrated vortex beam emitters using photonic inverse design. We experimentally demonstrate generation of vortex beams with angular momentum spanning -3$\hbar$ to 3$\hbar$. We show the generality of this design procedure by designing a vortex beam multiplexer capable of exciting a custom vortex beam fiber. Finally, we produce foundry-fabricated beam emitters with wide-bandwidths and high-efficiencies that take advantage of a multi-layer heterogeneous integration.