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利用前向受激布里渊散射高精度测量光纤的泊松比及其温度依赖性。

High accuracy measurement of Poisson's ratio of optical fibers and its temperature dependence using forward-stimulated Brillouin scattering.

作者信息

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

出版信息

Opt Express. 2022 Jan 3;30(1):42-52. doi: 10.1364/OE.442295.

Abstract

Transverse acoustic mode resonances enable a high accuracy determination of Poisson's ratio and elastic properties of optical fibers. An all-optical pump and probe technique is used for efficient excitation and accurate characterization of both, radial and torsional-radial acoustic resonances of optical fibers. Simple and precise algebraic expressions for the frequencies of high order acoustic resonances are derived, enabling a rigorous analysis of the experimental data using standard least squares fitting. Following this approach, the determination of Poisson's ratio does not require the measurement of any physical length, but only frequency measurements are required. An accuracy better than 1 ‰ is achieved. The dependence of the fiber Poisson's ratio with temperature is also determined experimentally.

摘要

横向声学模式共振能够高精度地测定光纤的泊松比和弹性特性。一种全光泵浦和探测技术被用于高效激发和精确表征光纤的径向以及扭转-径向声学共振。推导了高阶声学共振频率的简单精确代数表达式,从而能够使用标准最小二乘法拟合对实验数据进行严格分析。按照这种方法,泊松比的测定不需要测量任何物理长度,仅需进行频率测量。实现了优于1‰的精度。还通过实验确定了光纤泊松比随温度的变化关系。

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