用于通信的相干耦合光子晶体垂直腔激光器

K.D. Choquctte, J.J. Raflery, A. Danner, P. Leisher
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引用次数: 2

摘要

光学互连将在未来航天器的内部通信以及卫星星座之间的内部通信中发挥重要作用。具有新功能的光源,如固态光束控制,将有许多优势。本文讨论了一种创建二维相干耦合垂直发射激光腔阵列的新方法。相干光耦合是通过在光子晶体垂直腔面发射激光器的顶部分布布拉格反射器内创建2倍2的缺陷腔阵列来实现的。通过改变耦合区内的空穴参数来改变耦合区内的折射率,实现了远场的相干耦合。利用这种方法可以得到具有高光谱纯度的扩展区域相干光源。此外,调整阵列中激光器之间的相移将使远场发射模式的角度转向成为可能。这样的相干激光器阵列将允许开发具有电子束导向能力的光通信激光源
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coherently coupled photonic crystal vertical cavity lasers for communication applications
Optical interconnects will have an important role for internal communication within future spacecrafts as well as intra-communication between satellite constellations. Optical sources with novel functionality, such as solid state beam steering, would have many advantages. A novel approach for creating 2D arrays of coherently coupled vertically emitting laser cavities has been demonstrated and is discussed herein. Coherent optical coupling is achieved by creating a 2times2 array of defect cavities within the top distributed Bragg reflector of a photonic crystal vertical cavity surface emitting laser. By modifying the index within the coupling regions, accomplished by varying the hole parameters in those regions, coherent coupling has been observed in the far field. Utilization of this approach may lead to extended area coherent sources with high spectral purity. Moreover, tuning the phase shift between lasers in the array would enable angular steering the far field emission pattern. Such a coherent array of lasers would allow the development of optical communication laser sources with electronic beam steering capability
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