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Birefringence measurement under hydrostatic pressure in twisted highly birefringent fibers

机译:扭曲高双折射纤维在静水压力下的双折射测量

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A new method of birefringence measurement in highly birefringent fibers influenced by hydrostatic pressure conditions up to 100 MPa is presented. The birefringence measurement method is based on twist-induced effects and has never been applied before in a high-pressure environment. The experiments were conducted using a specially designed pressure facility, which made it possible to simultaneously generate several mechanical perturbations, including twist and hydrostatic stress, and to investigate their effects on mode transmission in optical fibers. The results indicate that in the case of HB single-mode bow-tie fibers, hydrostatic pressure up to 100 MPa increased birefringence with a mean coefficient of (1//spl Delta/B/sub 0/)(/spl Delta//spl beta/)/dp=0.2%/MPa which is in very close agreement with our previous measurement based on Rayleigh scattering.
机译:提出了一种在高达100 MPa的静水压力条件下影响的高双折射光纤中双折射测量的新方法。双折射测量方法基于扭曲引起的影响,以前从未在高压环境中应用。实验是使用专门设计的压力设备进行的,该设备可以同时产生多种机械扰动,包括扭曲和静液压应力,并研究它们对光纤中模式传输的影响。结果表明,在HB单模领结光纤的情况下,高达100 MPa的静水压力会增加双折射,平均系数为(1 // spl Delta / B / sub 0 /)(/ s​​pl Delta // spl beta /)/ dp = 0.2%/ MPa,这与我们之前基于瑞利散射的测量非常吻合。

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