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Power coupling in multicore optical fiber tapers utilizing out-cladding ferrofluids

机译:利用外包铁磁流体的多芯光纤锥度中的功率耦合

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Herein we present the experimental implementation of a power coupling device that combines the technology of tapered, multicore microstructured optical fibres (MOFs) with ferrofluidic overlayers. Power coupling between different cores of a tapered, multicore MOF is demonstrated, utilizing magneto-refraction effects induced by magnetic field stimulus into a ferrofluidic outcladding surrounding of the multicore optical fibre taper. By tapering the multicore all-solid MOF to a specific diameter, the excitation of all the adjacent cores through the central one is achieved. Transmission spectra measurements of the individual cores proved that light coupling between fiber cores can be manipulated by magnetic field stimulus. We anticipate that such a type of magneto-tunable power-coupling photonic device can find applications in optical magnetometry, imaging and optical communications.
机译:本文中,我们介绍了一种功率耦合设备的实验实现,该设备将锥形多芯微结构光纤(MOF)技术与铁磁叠加器相结合。演示了锥形,多芯MOF的不同芯之间的功率耦合,利用了磁场激励在多芯光纤锥度周围的铁磁外包层中产生的磁折射效应。通过将多核全固态MOF锥化为特定直径,可以实现通过中心核激励所有相邻核。各个纤芯的透射光谱测量结果证明,纤芯之间的光耦合可以通过磁场刺激来控制。我们预计,这种类型的磁可调功率耦合光子器件可以在光磁测量,成像和光通信中找到应用。

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