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An air-core photonic crystal fiber based plasmonic sensor for high refractive index sensing

机译:高折射率传感的基于气体光子晶体纤维基位传感器

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摘要

Most surface plasmon resonance (SPR) based photonic crystal fiber (PCF) sensors have been designed to detect the analyte refractive index (RI) ranging from 1.33 to 1.41. In this paper, we propose a new approach to extend the detection range of the sensor, and it can be fabricated with the existing fabrication techniques. Contrary to the existing PCF based sensors, our designed sensor is based on an air-core PCF where analyte is placed to the core of the PCF through a vertical side opening channel and is able to detect RI of the analyte higher than that of the PCF background. We use a chemically stable plasmonic material (i.e., gold), where the plasmonic material and analyte are placed in such a way that there is no direct contact between them, thus reducing the interference effect. According to our simulation, we show that the spectral sensitivity and resolution are achieved as 11,700 nm/RIU and 8.55 x 10(-6) RIU, respectively, for the analyte RI of 1.42. We believe that our proposed sensor can be used to detect highly active chemical and biological liquid samples.
机译:最表面等离子体共振基于(SPR)的光子晶体光纤(PCF)传感器已被设计成检测范围从1.33至1.41的分析物的折射率(RI)。在本文中,我们提出了一种新的方法来延长传感器的检测范围,并且它可以与现有的制造技术来制造。违背现有的基于PCF传感器,我们设计的传感器是基于空芯PCF其中分析物是通过垂直侧开口通道放置到PCF的核心,是能够检测分析物的RI高于所述PCF的背景。我们使用化学稳定的等离激元材料(即,金),其中,所述等离激元材料和分析物被放置在这样一种方式,在它们之间没有直接接触,从而降低了干扰的影响。根据我们的模拟中,我们表明,光谱灵敏度和分辨率被实现为11700纳米/ RIU和8.55×10(-6)RIU,分别为1.42分析物RI。我们相信,我们提出的传感器可以用来检测高活性化学和生物液体样品。

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