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Optical Antenna Arrays on a Fiber Facet for In Situ Surface Enhanced Raman Scattering Detection

机译:光纤刻面上的光学天线阵列用于原位表面增强拉曼散射检测

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摘要

This paper reports a bidirectional fiber optic probe for the detection of surface enhanced Raman scattering (SERS). One facet of the probe features an array of gold optical antennas designed to enhance Raman signal, while the other facet of the fiber is used for the input and collection of light. Simultaneous detection of benzenethiol and 2-[(E)-2-pyridin-4-ylethenyl]pyridine is demonstrated through a 35 cm long fiber. The array of nanoscale optical antennas was first defined by electron-beam lithography on a silicon wafer. The array was subsequently stripped from the wafer and then transferred to the facet of a fiber. Lithographic definition of the antennas provides a method for producing two-dimensional arrays with well-defined geometry, which allows (i) the optical response of the probe to be tuned and (ii) the density of ‘hot spots’ generating the enhanced Raman signal to be controlled. It is difficult to determine the Raman signal enhancement factor (EF) of most fiber optic Raman sensors featuring ‘hot spots’ because the geometry of the Raman enhancing nanostructures is poorly defined. The ability to control the size and spacing of the antennas enables the EF of the transferred array to be estimated. EF values estimated after focusing a laser directly onto the transferred array ranged from 2.6 × 105 to 5.1 × 105.
机译:本文报道了一种用于表面增强拉曼散射(SERS)检测的双向光纤探头。探头的一个小面具有一排金光天线阵列,旨在增强拉曼信号,而光纤的另一个小面用于输入和收集光。通过一条35厘米长的纤维证明了同时检测苯硫酚和2-[((E)-2-吡啶-4--4-乙烯基乙烯基]吡啶]的能力。纳米级光学天线阵列首先通过电子束光刻在硅片上定义。随后将该阵列从晶片上剥离,然后转移到纤维的小面上。天线的光刻定义提供了一种生产具有明确定义几何形状的二维阵列的方法,该方法允许(i)调整探头的光学响应,以及(ii)产生增强拉曼信号的“热点”的密度被控制。很难确定大多数具有“热点”的光纤拉曼传感器的拉曼信号增强因子(EF),因为拉曼增强纳米结构的几何形状很难定义。控制天线的尺寸和间距的能力使得可以估计转移阵列的EF。将激光直接聚焦到转移阵列上后估计的EF值在2.6×10 5 到5.1×10 5 之间。

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