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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Tunable single phase-shifted and superstructure gratings using microfabricated on-fiber thin film heaters
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Tunable single phase-shifted and superstructure gratings using microfabricated on-fiber thin film heaters

机译:使用微型光纤薄膜加热器的可调谐单相移和超结构光栅

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摘要

Tunable optical filters have applications in wavelength-division multiplexing, optical sensing, and fiber lasers. Fiber gratings that are tuned by resistive Joule heating of a thin metal film deposited onto the fiber are attractive because of their compactness, low power consumption, and controllable optical characteristics. In particular, the small effective axial thermal diffusion lengths in these systems allow complex heating profiles to be defined simply by controlling the local film thickness. In this paper, we demonstrate devices with single and multiple thermally actuated phase-shifted elements. The measured reflection spectra of these devices compare favorably with simulations based on a one-dimensional model of heat flow and confirm the heat flow characteristics expected from theory.
机译:可调谐滤光片可用于波分复用,光学传感和光纤激光器。通过电阻焦耳加热沉积在光纤上的金属薄膜调谐的光纤光栅具有紧凑性,低功耗和可控制的光学特性,因此具有吸引力。特别地,这些系统中小的有效轴向热扩散长度允许简单地通过控制局部膜厚度来限定复杂的加热曲线。在本文中,我们演示了具有单个和多个热激励相移元件的设备。这些设备的实测反射光谱与基于热流的一维模型的模拟相比具有优势,并确认了理论上期望的热流特性。

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