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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Optical and mechanical effects of frozen-in stresses and strains in optical fibers
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Optical and mechanical effects of frozen-in stresses and strains in optical fibers

机译:光纤中冻结应力和应变的光学和机械效应

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Frozen-in stresses and strains can significantly impact both the optical and mechanical performance of optical fibers, enabling unique functionalities or leading to serious impairments. Frozen-in strains can be grouped into two general categories: those directly inducing strong birefringence, which are associated with residual elastic stresses; and those inducing a substantially isotropic index perturbation, which can be described as inelastic frozen-in strains. Both types of frozen-in strains can be simultaneously present in the same optical fiber. Frozen-in viscoelasticity was only recently found to be an important draw-induced inelastic strain that can significantly perturb the refractive index profile and hence the waveguiding properties of optical fibers. The optical and mechanical effects of both types of frozen-in stresses and strains are reviewed. Both practical applications as well as impairments are discussed.
机译:冻结的应力和应变会显着影响光纤的光学和机械性能,从而导致独特的功能或导致严重的损伤。冻结应变可分为两大类:直接引起强双折射的应变,与残余弹性应力相关;以及引起基本上各向同性的指数扰动的那些,可以描述为非弹性冻结应变。两种类型的冻结应变可以同时存在于同一根光纤中。冻结粘弹性只是直到最近才发现是一种重要的拉伸诱导的非弹性应变,它可以显着扰动折射率分布并因此扰乱光纤的波导特性。回顾了两种类型的冻结应力和应变的光学和机械效应。讨论了实际应用以及损害。

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