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Ultralow thermal sensitivity of phase and propagation delay in hollow core optical fibres

机译:空心光纤中相位和传播延迟的超低热灵敏度

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摘要

Propagation time through an optical fibre changes with the environment, e.g., a change in temperature alters the fibre length and its refractive index. These changes have negligible impact in many key fibre applications, e.g., telecommunications, however, they can be detrimental in many others. Examples are fibre-based interferometry (e.g., for precise measurement and sensing) and fibre-based transfer and distribution of accurate time and frequency. Here we show through two independent experiments that hollow-core photonic bandgap fibres have a significantly smaller sensitivity to temperature variations than traditional solid-core fibres. The 18 times improvement observed, over 3 times larger than previously reported, makes them the most environmentally insensitive fibre technology available and a promising candidate for many next-generation fibre systems applications that are sensitive to drifts in optical phase or absolute propagation delay.
机译:通过光纤的传播时间随环境而变化,例如,温度的变化会改变光纤的长度及其折射率。这些变化对许多关键的光纤应用(例如电信)的影响可忽略不计,但是,它们对许多其他应用可能是有害的。例子是基于光纤的干涉测量(例如,用于精确的测量和感测)以及基于光纤的精确时间和频率的传输和分配。在这里,我们通过两个独立的实验表明,中空光子带隙光纤对温度变化的敏感性比传统的实芯光纤要小得多。观察到的18倍改进,比以前报道的大3倍以上,使它们成为可用的对环境最不敏感的光纤技术,并且对于许多对光相位漂移或绝对传播延迟敏感的下一代光纤系统应用来说,它是有前途的候选者。

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