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Piezoelectrically induced optical phase modulation of light in single-mode fibers

机译:压电诱导光在单模光纤中的光相位调制

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Optical phase modulation induced in piezoelectric copolymer, vinylidene fluoride (73 mol.%)/trifluoroethylene (27 mol.%), coated single-mode fibers has been examined and analyzed from both experimental and theoretical aspects. High-sensitive phase modulation, which is more than four times as large as those of vinylidene fluoride/tetrafluoroethylene copolymer, is obtained over a flat response range from 10 kHz to 3 MHz. At frequencies below 7 kHz and higher than 6 MHz the optical responses are dominated by axial and radial resonances, respectively, of the fiber-jacket composite. The theoretical prediction on induced phase shifts at high frequencies is carried out based on radial vibration analysis and followed by the experimental results.
机译:从实验和理论两个方面对压电共聚物,偏二氟乙烯(73摩尔%)/三氟乙烯(27摩尔%),涂覆的单模光纤中引起的光相位调制进行了研究和分析。在10 kHz至3 MHz的平坦响应范围内,可以获得高灵敏度的相位调制,该相位调制的体积是偏二氟乙烯/四氟乙烯共聚物的四倍以上。在低于7 kHz且高于6 MHz的频率下,光学响应分别由纤维-护套复合材料的轴向和径向共振主导。在径向振动分析的基础上,进行了高频感应相移的理论预测,并给出了实验结果。

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