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Design of Tunable Couplers Using Magnetic Fluid Filled Three-Core Optical Fibers

机译:磁性流体填充三芯光纤的可调谐耦合器设计

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摘要

In this letter, we propose a novel concept to achieve tunable coupling characteristics in three-core optical fiber couplers, where two cores with 8 $mu{rm m}$ in diameter acting as input and output ports are separated by a magnetic fluid filled hollow-channel which acts as a resonator, by externally varying the magnetic field. Numerical simulations carried through the finite element method and the coupled mode theory reveal that a short coupling length of 4.1 mm is required to achieve a complete transfer of power from the input core to the output core at a magnetic field of ${sim}{rm 82}~{rm Oe}$. As the external magnetic field is varied, the resonant condition is changed which affects the fraction of power at the output port. A good agreement between derived analytical results and numerical results is found.
机译:在这封信中,我们提出了一个新颖的概念来实现三芯光纤耦合器的可调耦合特性,其中直径为8μm的两个芯分别用作输入和输出端口,并被填充有磁性流体的空心部分隔开通过在外部改变磁场来充当谐振器的通道。通过有限元方法和耦合模式理论进行的数值模拟表明,在$ {sim} {rm的磁场下,需要短的耦合长度为4.1 mm才能实现从输入铁心到输出铁心的完全功率传输。 82}〜{rm Oe} $。随着外部磁场的变化,谐振条件也会发生变化,这会影响输出端口的功率比例。在导出的分析结果和数值结果之间找到了很好的一致性。

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