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Kilometers Long Graphene-Coated Optical Fibers for Fast Thermal Sensing

机译:公里长石墨烯涂层光纤用于快速热敏

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摘要

The combination of optical fiber with graphene has greatly expanded the application regimes of fiber optics, from dynamic optical control and ultrafast pulse generation to high precision sensing. However, limited by fabrication, previous graphene-fiber samples are typically limited in the micrometer to centimeter scale, which cannot take the inherent advantage of optical fibers—long-distance optical transmission. Here, we demonstrate kilometers long graphene-coated optical fiber (GCF) based on industrial graphene nanosheets and coating technique. The GCF shows unusually high thermal diffusivity of 24.99 mm2 s−1 in the axial direction, measured by a thermal imager directly. This enables rapid thermooptical response both in optical fiber Bragg grating sensors at one point (18-fold faster than conventional fiber) and in long-distance distributed fiber sensing systems based on backward Rayleigh scattering in optical fiber (15-fold faster than conventional fiber). This work realizes the industrial-level graphene-fiber production and provides a novel platform for two-dimensional material-based optical fiber sensing applications.
机译:光纤与石墨烯的组合极大地扩展了光纤的应用方案,从动态光学控制和超快脉冲产生到高精度感测。然而,通过制造的限制,之前的石墨烯 - 纤维样品通常限制在千分尺到厘米级,这不能采取光纤 - 长距离光学传输的固有优势。在这里,我们证明了基于工业石墨烯纳米片和涂布技术的公里长石墨烯涂层光纤(GCF)。 GCF在轴向方向上显示出24.99mm 2 S-1的异常高的热扩散率,通过热成像仪直接测量。这使得在光纤布拉格光栅传感器中能够在一个点(比传统光纤快18倍)和基于光纤中的后向瑞利散射(比传统光纤快15倍)的远程分布式光纤传感系统中的快速热光响应。这项工作实现了工业级石墨烯 - 纤维生产,为二维材料的光纤传感应用提供了一种新颖的平台。

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