Ruffato G, Massari M, Girardi M, Parisi G, Zontini M, Romanato F
Opt Express. 2019 Aug 19;27(17):24123-24134. doi: 10.1364/OE.27.024123.
A novel optical device is designed and fabricated in order to overcome the limits of the traditional sorter based on log-pol optical transformation for the demultiplexing of optical beams carrying orbital angular momentum (OAM). The proposed configuration simplifies the alignment procedure and significantly improves the compactness and miniaturization level of the optical architecture. Since the device requires to operate beyond the paraxial approximation, a rigorous formulation of transformation optics in the non-paraxial regime has been developed and applied. The sample has been fabricated as 256-level phase-only diffractive optics with high-resolution electron-beam lithography, and tested for the demultiplexing of OAM beams at the telecom wavelength of 1310 nm. The designed sorter can find promising applications in next-generation optical platforms for mode-division multiplexing based on OAM modes both for free-space and multi-mode fiber transmission.
为了克服传统基于对数极坐标光学变换的光束分离器在对携带轨道角动量(OAM)的光束进行解复用方面的局限性,设计并制造了一种新型光学器件。所提出的配置简化了对准过程,并显著提高了光学架构的紧凑性和小型化水平。由于该器件需要在傍轴近似之外运行,因此已经开发并应用了非傍轴区域变换光学的严格公式。该样品采用高分辨率电子束光刻技术制造为256级纯相位衍射光学器件,并在1310 nm电信波长下对OAM光束的解复用进行了测试。所设计的分离器在基于OAM模式的下一代自由空间和多模光纤传输的模分复用光学平台中具有广阔的应用前景。