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Enhancement of the Sensitivity With Reduced Confinement Loss for Ethanol Discovery

机译:降低乙醇发现的限制损失,提高灵敏度

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In this research, a highly sensitive porous core octagonal photonic crystal fiber has been exhibited for sensing Ethanol (n=1.354), the most valuable chemicals used in the industries all over the world. The proposed PCF contains five rings which are a combination of circular and elliptical shaped air ducts in the outer portion and two rings containing circular air ducts in the inner region. The principal typical features like relative sensitivity and confinement loss have been observed at an extensive order of wavelength from 0.8 μm to 1.9μm using Finite Element Method (FEM). It has represented the sensitivity and confinement loss to a new extent for ethanol sensing comparing to the previous PCFs. It has been found that enlarging the diameter of inner region upgrades the relative sensitivity. From this study, we have obtained a higher relative sensitivity of 69.90% and lower confinement loss of 2.00×10-10 (dB/m) for ethanol (n=1.354) at the wavelength λ=1.33μm.
机译:在这项研究中,已经展示了一种高灵敏度的多孔核八角形光子晶体光纤,用于传感乙醇(n = 1.354),乙醇是全世界工业中使用的最有价值的化学物质。所提出的PCF包含五个环,其在外部是圆形和椭圆形的风道的组合,而在内部区域是两个包含圆形的风道的环。使用有限元方法(FEM)在0.8μm至1.9μm的广泛波长范围内观察到了主要的典型特征,例如相对灵敏度和限制损耗。与以前的PCF相比,它在新的程度上代表了乙醇传感的灵敏度和限制损失。已经发现,扩大内部区域的直径可以提高相对灵敏度。通过这项研究,我们获得了69.90%的较高相对灵敏度和2.00×10 \ n -10 \ n(dB / m),用于乙醇(n = 1.354),波长λ=1.33μm 。

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