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利用窄带宽长周期光栅对光纤中前向布里渊散射的高效探测方法。

Efficient interrogation method of forward Brillouin scattering in optical fibers using a narrow bandwidth long-period grating.

作者信息

Sánchez L A, Díez A, Cruz J L, Andrés M V

出版信息

Opt Lett. 2020 Oct 1;45(19):5331-5334. doi: 10.1364/OL.402783.

Abstract

A new technique, to the best of our knowledge, for the characterization of the effective refractive index modulation in optical fibers due to transverse acoustic mode resonances excited by electrostriction is reported. The resonances excited by an optical pulse are probed by a narrow bandwidth long-period grating (LPG) inscribed in the fiber, which is interrogated by a continuous wave (CW) beam. The LPG used in this experiment has a narrow bandwidth and high sensitivity to small mode index perturbations, allowing the measurement of index variations from below 10 to 10. Radial and torsional-radial acoustic modes were characterized up to 1.1 GHz. The linewidth of resonances was found to be much shorter than in previous reports in which long fiber lengths are typically required, obtaining Q factors as high as 5000.

摘要

据我们所知,本文报道了一种新技术,用于表征由于电致伸缩激发的横向声学模式共振而导致的光纤中有效折射率调制。由光脉冲激发的共振通过写入光纤的窄带宽长周期光栅(LPG)进行探测,该光栅由连续波(CW)光束进行询问。本实验中使用的LPG具有窄带宽且对小模式折射率扰动具有高灵敏度,能够测量低至10至10的折射率变化。径向和扭转 - 径向声学模式的表征频率高达1.1 GHz。发现共振的线宽比以往通常需要长光纤长度的报告中的线宽短得多,获得了高达5000的品质因数。

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