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Surface plasmon resonance in the visible region in sensors based on tapered optical fibers

机译:基于锥形光纤的传感器中可见区域中的表面等离子体共振

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摘要

Doubly deposited uniform-waist tapered optical fibers (DLUWTs) have shown their versatility and good performance as basis for surface plasmon resonance (SPR) sensors for a variety of wavelength ranges. In this work we experimentally show how these devices can be employed to extend the technology of SPR fiber sensors to the visible region, down to about 530 nm, with remarkable results in terms of sensitivity, plasmon definition and the availability of multiple plasmon resonances for each configuration. In this way, DLUWTs can be used to cover a range of more than 1000 nm for aqueous media only by changing the thickness of the deposits. Also, it is shown how these results can be used with the so-called absorption method to make selective the response of the sensors and a study is made on the influence of the taper waist in the performance of the devices. The number of SPR fiber sensors working in the visible region, of great interest in biological research, that have been depicted in the literature is very small, and the sensors that we present here notably improve their performance.
机译:双重沉积的均匀腰部锥形光纤(DLUWTS)已经示出了它们的多功能性和良好的性能作为各种波长范围的表面等离子体共振(SPR)传感器的基础。在这项工作中,我们通过实验展示了这些设备如何用于将SPR光纤传感器的技术扩展到可见区域,下降至约530nm,以灵敏度,等离子体定义和多种等离子体共振的可用性而显着的结果配置。以这种方式,通过改变沉积物的厚度,可以使用DLuWTS用于覆盖含水介质超过1000nm的范围。此外,示出了如何与所谓的吸收方法一起使用这些结果,以使选择性的传感器的响应和研究是对器件性能性能的影响。在文献中所描绘的可见区域中,在可见区域中工作的SPR光纤传感器的数量非常小,以及我们在这里展示的传感器显着提高了它们的性能。

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