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Evanescent absorption based fluoride fiber sensing enhancement led by doped graphene's thermo-optic dispersion in NIR

机译:近红外光谱中掺杂石墨烯的热光色散促进基于van逝吸收的氟化物纤维传感增强

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摘要

Evanescent wave absorption based fiber optic sensor with fluoride core, doped silica clad, amorphous silicon layer, and graphene monolayer is studied in near infrared for highly sensitive and precise recognition of melanoma in liver tissues. The findings reveal that by carefully tuning the graphene's dispersive behavior through doping and operating at slightly increased temperature (above room temperature) can lead to significantly high sensitivity and fine resolution. An optimum combination 1550nm wavelength, 0.6eV chemical potential (of graphene), and 311.1K temperature' leads to 112.211mW/RIU sensitivity and 8.91x10(-10) RIU resolution. An ultrathin silicon layer leads to better performance along with improved stability against possible oxidation and thermal issues. A detailed survey finds that the above performance (resolution, in particular) is largely superior than the fiber sensors based on different techniques. The proposed sensor can be amended accordingly for biomedical applications needing high precision of tissue/process monitoring.
机译:基于fluoride逝波吸收的具有氟化物芯,掺杂的二氧化硅包覆层,非晶硅层和石墨烯单层的光纤传感器已在近红外中进行了研究,以高度灵敏和精确地识别肝组织中的黑色素瘤。研究结果表明,通过掺杂和在稍微升高的温度(高于室温)下操作来精心调节石墨烯的分散行为,可以导致显着高的灵敏度和精细的分辨率。 1550nm波长,(石墨烯的)0.6eV化学势和311.1K温度的最佳组合可产生112.211mW / RIU灵敏度和8.91x10(-10)RIU分辨率。超薄硅层可带来更好的性能,并提高了对可能发生的氧化和热问题的稳定性。一项详细的调查发现,上述性能(尤其是分辨率)大大优于基于不同技术的光纤传感器。所提出的传感器可以相应地修改,以用于需要高精度的组织/过程监测的生物医学应用。

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