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Amplification properties of Er/sup 3+/-doped photonic crystal fibers

机译:Er / sup 3 +/-掺杂的光子晶体光纤的放大特性

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The amplification properties of different photonic crystal fibers have been studied by means of a full vector finite-element modal formulation combined with a population and propagation rate equation solver. A honeycomb as well as a cobweb photonic crystal fiber have been considered. The consequences of the defect dimension and the dopant radius on the field intensity distribution as well as the overlap integrals have been analyzed. Results demonstrate that a proper photonic crystal fiber design can be usefully exploited in order to obtain active fibers with superior characteristics compared to standard step index ones. In particular, photonic crystal fibers open up the possibility of a gain medium with highly flexible geometric, dispersion, and amplifying characteristics.
机译:通过结合人口和传播速率方程求解器的全矢量有限元模态公式,研究了不同光子晶体光纤的放大特性。已经考虑了蜂窝以及蜘蛛网光子晶体纤维。分析了缺陷尺寸和掺杂剂半径对场强分布以及重叠积分的影响。结果表明,与标准阶跃折射率光纤相比,可以有效地利用适当的光子晶体光纤设计,以获得具有优良特性的活性光纤。特别是,光子晶体光纤开辟了具有高度灵活的几何,色散和放大特性的增益介质的可能性。

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