利用法布里-珀罗共振的再循环载波调制

Christopher J. Cullen, J. Jerothe, J. Murakowski, M. Zablocki, A. Sharkawy, D. Prather
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引用次数: 0

摘要

由于使用光纤的固有优势,将射频信息上转换为光信号已成为除电信领域外的一种有吸引力的通信替代方案。光纤已被证明具有更低的损耗,更好的带宽,更轻,和传统的铜电缆一样坚固。这导致了智能交通系统的应用,军事用途(包括集成到坦克和无人机中),以及这里没有明确说明的其他用途。这些系统工作良好的核心是射频信号的高效,准确的上转换;在此,将电光调制器的滚转引入到系统中。这些调制器的效率和线性度越高,上转换的数据就越精确,转换所需的功率就越小。人们一直在努力通过开发具有更高特性χ(2)非线性的材料来提高效率[1],并开发结构来增加与材料的场相互作用幅度[2]-[4],但并非没有限制设备的带宽。在这项工作中,我们探索了一种新的调制方案,在不牺牲带宽的情况下提高效率和线性度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recycled carrier modulation using Fabry-Perot resonance
Up-converting RF information to optical signals has become an appealing alternative for communication, besides in the realm of telecommunication, due to inherent advantages in using fiber optics. Fibers have proven to have lower loss, better bandwidth, be lighter, and as robust as conventional copper cabling. This has led to applications in intelligent traffic systems, military uses (including integration into tanks and drones), and others not explicitly stated here. Central to these systems working well is the efficient, accurate up-converting of an RF signal; it is here that the roll of the electro-optic modulator is introduced into the system. The more efficient and linear these modulators can be, the more accurately the data can be up-converted, and the less power required perform the conversion. There have been efforts to increase efficiency by developing materials with higher intrinsic χ(2) nonlinearity [1], and developing structures to increase field interaction magnitude with the material [2]-[4], but not without limiting the bandwidth of the device. In this work, we explore a novel modulation scheme to up efficiency and linearity without sacrificing bandwidth.
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