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Brillouin frequency shift dependences on temperature and strain in PMMA-based polymer optical fibers estimated by acoustic velocity measurement

机译:由声速测量估计的PMMA的高分子光纤中温度和应变的布里渊频率偏移依赖性

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We estimated the dependences of Brillouin frequency shift (BFS) on temperature and strain in poly(methyl methacrylate)-based polymer optical fibers using ultrasonic pulse-echo technique at ~10 MHz. The estimated BFS dependence on temperature was linear with a coefficient of approximately -17 MHz/K at 650 nm pump, which was -34 times larger than that of silica fibers at 650 nm pump. In contrast, its strain dependence was found to be nonlinear, probably originating from the elastic-to-plastic transition.
机译:我们估计了在〜10MHz的超声波脉冲回波技术在聚(甲基丙烯酸甲酯)基聚合物光纤中温度和菌株的依赖性和菌株的依赖性。估计的BFS对温度的依赖性是线性的,其系数约为-17MHz / k,在650nm泵中,比650nm泵的二氧化硅纤维大的-34倍。相反,发现其应变依赖性是非线性的,可能是来自弹性到塑料的过渡。

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