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自旋光纤有效费尔德常数的介绍与测量

Introduction and measurement of the effective Verdet constant of spun optical fibers.

作者信息

Yao Penghui, Chen Xiaojun, Hao Peng, Xiao Hao, Ding Zhenyang, Liu Tiegen, Steve Yao X

出版信息

Opt Express. 2021 Jul 19;29(15):23315-23330. doi: 10.1364/OE.432418.

Abstract

We introduce the term effective Verdet constant to describe the effect of spun fiber fabrication parameters on the Faraday polarization rotation sensitivity in response to a longitudinal magnetic field along the fiber. We obtain the expression of the effective Verdet constant of a spun fiber showing that it is always less than that of an ideal fiber free of birefringence by a factor relating to the ratio of spin twist rate to unspun fiber retardation per unit length. The larger the ratio, the closer the effective Verdet constant to that of the ideal fiber is. By measuring the polarization rotation in spun fibers with a highly accurate polarization analysis system made with binary polarization rotators, we experimentally obtain the effective Verdet constants of three different high birefringence spun fibers from three different manufactures at 1310 nm, with values of 1.07 × 10 rad/A, 1.05 × 10 rad/A, and 1.04 × 10 rad/A, respectively, which are 98%, 96%, and 95% of that of the ideal fused silica fiber free of birefringence. Our work is important for understanding the Faraday Effect in the spun optical fibers, as well as for quantifying the Faraday sensitivity of different spun fibers for electrical current and magnetic field sensing applications.

摘要

我们引入有效费尔德常数这一术语,以描述纺丝光纤制造参数对响应沿光纤纵向磁场的法拉第偏振旋转灵敏度的影响。我们得到了纺丝光纤有效费尔德常数的表达式,结果表明,其值总是比无双折射的理想光纤的费尔德常数小一个与自旋扭转率和单位长度未纺丝光纤延迟率之比相关的系数。该比值越大,有效费尔德常数就越接近理想光纤的费尔德常数。通过使用由二元偏振旋转器构成的高精度偏振分析系统测量纺丝光纤中的偏振旋转,我们在1310 nm波长下通过实验得到了来自三个不同制造商的三种不同高双折射纺丝光纤的有效费尔德常数,其值分别为1.07×10 rad/A、1.05×10 rad/A和1.04×10 rad/A,分别为无双折射理想熔石英光纤费尔德常数的98%、96%和95%。我们的工作对于理解纺丝光纤中的法拉第效应以及量化不同纺丝光纤在电流和磁场传感应用中的法拉第灵敏度具有重要意义。

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