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An HC-PCF Fluorescence Spectrocopy for Detection of Microsphere Samples Based on Refractive Index Scaling Law

机译:基于折射率比例定律的HC-PCF荧光光谱法检测微球样品

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This paper illustrates an efficient fluorescence detection of micro particles using hollow-core photonic crystal fibers (HC-PCFs) by applying the refractive index (RI) scaling law. The variations in the central wavelength for different filling material indices are illustrated for most commonly available HC-PCFs that have cladding made of pure fused silica with array of air holes running along the entire length of the fiber. The proposed concept is verified by immobilizing fluorescent microsphere samples inside two HC-PCFs of different central wavelengths and the quantification of fluorescence inside the fibers is performed through spectroscopic analysis. The sensitivity has been compared for similar fiber with different dispersed media and different fibers with same dispersed medium.
机译:本文说明了通过应用折射率(RI)缩放定律,使用空心光子晶体光纤(HC-PCFs)对微粒进行有效的荧光检测。对于最常用的HC-PCF,说明了不同填充材料折射率的中心波长的变化,这些HC-PCF的包层由纯熔融石英制成,并沿光纤的整个长度分布有气孔阵列。通过将荧光微球样品固定在两个不同中心波长的HC-PCF内,验证了所提出的概念,并且通过光谱分析对纤维内部的荧光进行了定量。对于具有不同分散介质的相似纤维和具有相同分散介质的不同纤维,已经比较了灵敏度。

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