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Composite Material Hollow Core Fibers - functionalisation with silicon and 2D materials

机译:复合材料空心纤芯纤维-硅和2D材料的功能化

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Hollow Core Anti-resonant fibers allow for guidance of mid-infrared light at low attenuation and can be used for a variety of applications, such as high power laser transmission and gas sensing. Recent work has seen the integration of silicon into such fibers with linear losses potentially as low as 0.1dB/m. Due to the change in refractive index difference of silicon via for example the free carrier plasma dispersion effect, the prospect of an all optical modulator using such a fiber has been proposed. Here, further work has been undertaken on the integration of functional materials inside hollow core fibers via the deposition of the TMD semiconductor material MoS_2, in its few-layered form. Through the use of a liquid precursor, a high quality MoS_2 film can be deposited over 30cm length of fiber, as confirmed via Raman spectroscopy. The transmission spectra of these novel composite material hollow core fibers has also been analysed, showing additional loss of around 5dB/m, despite being only around 2nm in thickness. This implies that the refractive index of the integrated material is potentially able to modify the guidance properties of the fiber sample. We will present a comparison of the composite material hollow core fibers we have fabricated to date and discuss the prospects for using these novel waveguides in the active manipulation of light, including optical switching, sensing and frequency generation.
机译:中空芯抗谐振光纤可在低衰减情况下引导中红外光,并可用于多种应用,例如高功率激光传输和气体传感。最近的工作已经看到将硅集成到此类光纤中,其线性损耗可能低至0.1dB / m。由于硅的折射率差通过例如自由载流子等离子体分散效应而改变,因此提出了使用这种光纤的全光调制器的前景。在此,已经进行了进一步的工作,即通过沉积多层结构的TMD半导体材料MoS_2来将功能材料集成到空心纤维中。通过拉曼光谱法证实,通过使用液态前体,可以在30cm长的纤维上沉积高质量的MoS_2膜。还分析了这些新型复合材料中空纤维的透射光谱,尽管厚度仅为2nm,但仍显示出约5dB / m的额外损耗。这意味着集成材料的折射率潜在地能够改变纤维样品的引导特性。我们将对迄今为止制造的复合材料空心纤维进行比较,并讨论在光的主动控制(包括光学开关,传感和频率产生)中使用这些新型波导的前景。

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  • 会议地点 San Francisco(US)
  • 作者单位

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

    Optoelectronics Research Centre, University of Southampton, SO17 1BJ, UK;

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