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Combining Hollow Core Photonic Crystal Fibers with Multimode, Solid Core Fiber Couplers through Arc Fusion Splicing for the Miniaturization of Nonlinear Spectroscopy Sensing Devices

机译:通过电弧熔接将空心磁芯光子晶体光纤与多模,固态纤芯光纤耦合器相结合,以实现非线性光谱传感设备的小型化

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The presence of fiber optic devices, such as couplers or wavelength division multiplexers, based on hollow-core fibers (HCFs) is still rather uncommon, while such devices can be imagined to greatly increase the potential of HCFs for different applications, such as sensing, nonlinear optics, etc. In this paper, we present a combination of a standard, multimode fiber (MMF) optic coupler with a hollow core photonic bandgap fiber through arc fusion splicing and its application for the purpose of multiphoton spectroscopy. The presented splicing method is of high affordability due to the low cost of arc fusion splicers, and the measured splicing loss ( SL ) of the HCF-MMF splice is as low as (0.32 ± 0.1) dB, while the splice itself is durable enough to withstand a bending radius ( r bend ) of 1.8 cm. This resulted in a hybrid between the hollow core photonic bandgap fiber (HCPBF) and MMF coupler, delivering 20 mW of average power and 250-fs short laser pulses to the sample, which was good enough to test the proposed sensor setup in a simple, proof-of-concept multiphoton fluorescence excitation-detection experiment, allowing the successful measurement of the fluorescence emission spectrum of 10 ?5 M fluorescein solution. In our opinion, the presented results indicate the possibility of creating multi-purpose HCF setups, which would excel in various types of sensing applications.
机译:基于空心光纤(HCF)的光纤设备(例如耦合器或波分复用器)的存在仍然很少见,而可以想象这样的设备会大大增加HCF在不同应用(例如传感,在本文中,我们介绍了一种标准的多模光纤(MMF)光耦合器与中空光子带隙光纤的电弧熔接技术的结合及其在多光子光谱学中的应用。由于电弧熔接机的成本低,本发明的熔接方法具有很高的承受能力,并且HCF-MMF熔接的测量熔接损耗(SL)低至(0.32±0.1)dB,而熔接本身也足够耐用以承受1.8厘米的弯曲半径(r bend)。这导致了空心光子带隙光纤(HCPBF)和MMF耦合器之间的混合,可为样品提供20 mW的平均功率和250 fs的短激光脉冲,足以以简单的方式测试建议的传感器设置,概念验证的多光子荧光激发检测实验,可以成功测量10 µ5 M荧光素溶液的荧光发射光谱。我们认为,提出的结果表明有可能创建多功能的HCF设置,这将在各种类型的传感应用中脱颖而出。

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