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Enabling photonic technologies for seeing-limited telescopes: fabrication of integrated photonic lanterns on a chip

机译:实现光子技术用于查看限制望远镜:在芯片上制造集成的光子灯笼

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In this paper we present theoretical and laboratory results on integrated directly-written photonic lanterns with varyingtaper lengths. These lanterns convert seeing-limited light into multiple diffraction limited signals, in other words,a multimode signal into multiple single-mode signals. We investigated 19-channel structures which were written withina 30-mm-long glass block and designed to operate at 1550 nm. A single structure consisted of a multimode waveguidewhich transitioned into an array of single-mode waveguides and then back to a multimode waveguide utilizing cosinetaper transitions. Based on simulations we found that transition lengths of 6 mm were sufficient to obtain throughput ata level of ~95%. Fabricated devices showed losses (coupling and transition losses) at the level of 30% for injectionF/# & 5 and taper lengths & 5 mm. We believe that such devices show great promise for future use in astronomy.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:在本文中,我们将理论和实验室结果呈现在整合直接写的光子灯笼,其具有变化的锥形长度。这些灯笼将在多个单模信号中的多模信号转换为多个衍射有限信号的微量衍射限制信号。我们调查了19毫米长的玻璃块内写入的19通道结构,并设计为在1550nm处运行。单个结构包括在单模波导阵列中转换成多模波导,然后利用Cosinetaper转变回到多模波导。基于仿真,我们发现6毫米的过渡长度足以获得含量的ATA水平〜95%。制造的装置显示出损耗(耦合和过渡损失)在注入/#& 5和锥度长度& 5毫米。我们认为,这些设备对天文学的未来使用表现出了很大的承诺。©(2012)光学仪表工程师(SPIE)的版权协会。仅供个人使用的摘要下载。

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