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Polarization Properties of Photonic Crystal Fibers Considering Thermal and External Stress Effects

机译:考虑热敏和外部应力效应的光子晶体纤维的偏振特性

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Analysis of the effects of thermal and external stress on the properties of solid core photonic crystal fibers has been carried out in this work by using the finite element method. The external stress acting on the fiber induces a specific stress distribution on the fiber's cross section making the isotropic fiber material birefringent. The effective index of the fiber under stress decreases almost linearly with a significant increase in the birefringence over a wide operating wavelength (0.7μm-2.0μm). With the increase of the wavelength at all considered external stress (up to 4GPa), the polarization mode dispersion decreases almost linearly. The study shows that the dispersion in the photonic crystal fiber exhibits anomalous values, revealing that at specific value of external stress, the fiber exhibits specific dispersion values. Thus, the photonic crystal fiber has got tremendous potential to be used as dispersion compensating device in the field of optical communications and other fields of applications.
机译:通过使用有限元法在该工作中进行了对固体核心光子晶体纤维的性能的影响分析。作用在纤维上的外部应力在纤维的横截面上引起特定的应力分布,使各向同性纤维材料双折射。在应力下的纤维的有效指数几乎线性降低,并且在宽的工作波长(0.7μm-2.0μm)上的双折射显着增加。随着所有被认为的外部应力(最多4GPa)的波长的增加,偏振模式分散几乎线性降低。该研究表明,光子晶体纤维中的分散表现出异常值,揭示在外部应力的比值下,光纤表现出特定的分散值。因此,光子晶体纤维具有巨大的电位将用作光通信领域和其他应用领域的分散补偿装置。

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