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Hollow-Core Fiber Technology: The Rising of “Gas Photonics”

机译:中空光纤技术:“气体光子学”的兴起

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Since their inception, about 20 years ago, hollow-core photonic crystal fiber and its gas-filled form are now establishing themselves both as a platform in advancing our knowledge on how light is confined and guided in microstructured dielectric optical waveguides, and a remarkable enabler in a large and diverse range of fields. The latter spans from nonlinear and coherent optics, atom optics and laser metrology, quantum information to high optical field physics and plasma physics. Here, we give a historical account of the major seminal works, we review the physics principles underlying the different optical guidance mechanisms that have emerged and how they have been used as design tools to set the current state-of-the-art in the transmission performance of such fibers. In a second part of this review, we give a nonexhaustive, yet representative, list of the different applications where gas-filled hollow-core photonic crystal fiber played a transformative role, and how the achieved results are leading to the emergence of a new field, which could be coined “Gas photonics”. We particularly stress on the synergetic interplay between glass, gas, and light in founding this new fiber science and technology.
机译:自从大约20年前创立以来,空心光子晶体光纤及其充气形式现在已经确立了自己的地位,既是提升我们对如何在微结构介电波导中限制和引导光的知识的平台,也是一个了不起的推动者在各种各样的领域中后者的范围从非线性和相干光学,原子光学和激光计量学,量子信息到高光场物理学和等离子体物理学。在这里,我们对主要的开创性作品进行了历史描述,我们回顾了已出现的不同光学制导机制背后的物理原理,以及如何将它们用作设计工具来设定当前变速器的最新技术这种纤维的性能。在本综述的第二部分中,我们给出了气体中空光子晶体光纤在其中发挥变革性作用的不同应用的非详尽列表,但具有代表性,以及所取得的成果如何导致新领域的出现,可以称为“气体光子学”。在建立这种新的纤维科学和技术时,我们特别强调玻璃,气体和光之间的协同作用。

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