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Ultrahigh Birefringent Photonic Crystal Fiber With Ultralow Confinement Loss

机译:超低限制损耗的超高双折射光子晶体光纤

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摘要

A photonic crystal fiber (PCF) with circular air holes in the fiber cladding and elliptical air holes in the fiber core is proposed. According to calculation, both ultrahigh birefringence (larger than 0.01) and ultralow confinement loss (less than 0.001dB/km) can be achieved simultaneously over a large wavelength range for a PCF with only four rings of circular air holes in the fiber cladding. The confinement loss in this PCF can be effectively reduced while the birefringence almost remains the same. The proposed design of the PCF is a solution to the tradeoff between the birefringence and the confinement loss for the originally reported highly birefringent elliptical-hole PCF. Moreover, an approach to modify the effective index of fiber core is also suggested in this letter
机译:提出了一种在光纤包层中具有圆形气孔,在纤芯中具有椭圆形气孔的光子晶体光纤(PCF)。根据计算,在光纤包层中只有四个环形气孔的PCF的大波长范围内,可以同时实现超高双折射(大于0.01)和超低限制损耗(小于0.001dB / km)。可以有效地减小该PCF中的限制损耗,而双折射几乎保持不变。 PCF的拟议设计是一种解决方案,可以解决最初报道的高度双折射椭圆孔PCF在双折射和限制损耗之间的折衷问题。此外,在这封信中还提出了一种修改纤芯有效指数的方法

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