Semiconductor core fibres: a scalable platform for nonlinear photonics

Meng Huang, John Ballato, Anna C. Peacock
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Abstract

Semiconductor core, glass cladding fibres that can be produced with scalable dimensions and unique waveguide designs are offering new opportunities for nonlinear photonics. This paper reviews developments in the fabrication and post-processing of such semiconductor core fibres and their enabling of low loss and high efficiency nonlinear components across wavelengths spanning the near- to mid-infrared. Through adaption and expansion of the production processes, routes to new core materials are being opened that could extend the application space, whilst all-fibre integration methods will result in more robust and practical semiconductor systems. Through continued improvement in the core materials, fibre designs and transmission losses, semiconductor fibres are poised to bring unique functionality to both the fibre and semiconductor research fields and their practical application into a myriad of optoelectronic devices.

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半导体芯光纤:非线性光子学的可扩展平台
半导体芯、玻璃包层光纤能够以可扩展的尺寸和独特的波导设计生产,为非线性光子学提供了新的机遇。本文回顾了此类半导体芯光纤的制造和后处理方面的发展,以及它们在近红外到中红外波段实现低损耗、高效率非线性元件的情况。通过调整和扩展生产工艺,正在开辟通往新芯材的道路,从而扩大应用空间,而全纤维集成方法将带来更坚固、更实用的半导体系统。通过不断改进芯材、光纤设计和传输损耗,半导体光纤有望为光纤和半导体研究领域带来独特的功能,并将其实际应用到各种光电设备中。
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