Ruffato Gianluca, Grillo Vincenzo, Romanato Filippo
Opt Express. 2021 Nov 8;29(23):38095-38108. doi: 10.1364/OE.438898.
The control of structured waves has recently opened innovative scenarios in the perspective of radiation propagation, advanced imaging, and light-matter interaction. In information and communication technology, the spatial degrees of freedom offer a wider state space to carry many channels on the same frequency or increase the dimensionality of quantum protocols. However, spatial decomposition is much more arduous than polarization or frequency multiplexing, and very few practical examples exist. Among all, beams carrying orbital angular momentum gained a preeminent role, igniting a variety of methods and techniques to generate, tailor, and measure that property. In a more general insight into structured-phase beams, we introduce here a new family of wave fields having a multipole phase. These beams are devoid of phase singularities and described by two continuous spatial parameters which can be controlled in a practical and compact way via conformal optics. The outlined framework encompasses multiplexing, propagation, and demultiplexing as a whole for the first time, describing the evolution and transformation of wave fields in terms of conformal mappings. With its potentialities, versatility, and ease of implementation, this new paradigm introduces a novel playground for space division multiplexing, suggesting unconventional solutions for light processing and free-space communications.
近年来,结构化波的控制在辐射传播、先进成像和光与物质相互作用等方面开启了创新局面。在信息与通信技术领域,空间自由度提供了一个更广阔的状态空间,以便在同一频率上承载多个信道或增加量子协议的维度。然而,空间分解比偏振或频率复用要困难得多,实际例子也非常少。其中,携带轨道角动量的光束发挥了卓越作用,催生出各种产生、定制和测量该特性的方法与技术。在对结构化相位光束更全面的洞察中,我们在此引入一类具有多极相位的新型波场。这些光束没有相位奇点,由两个连续的空间参数描述,可通过共形光学以实用且紧凑的方式进行控制。所概述的框架首次全面涵盖了复用、传播和解复用,从共形映射的角度描述了波场的演化与变换。凭借其潜力、通用性和易于实现的特点,这一新范式为空间分割复用引入了一个全新的领域,为光处理和自由空间通信提供了非传统的解决方案。