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Optical cavity-enhanced surface plasmon resonance refractive index sensing

机译:光腔增强的表面等离子体激元共振折射率传感

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A novel type of high-sensitivity Surface Plasmon Resonance (SPR)-based refractive index sensor is demonstrated, with a Kretschmann prism-coupling setup enclosed in an optical cavity and interrogated by a telecom wavelength laser source. Two thin layers of Au and SiO2 are deposited on the prism (SPR chip). Analogously to the sensors commonly referred as “Intensity modulated SPR sensors”, in the presented setup refractive index variations of the sample induce a shift of the SPR central wavelength, which in turn leads to a variation of the SPR chip reflectivity. Since the SPR chip is one of the cavity mirrors, the corresponding loss can be sensitively determined by measuring the internal photon lifetime by a cavity ring-down technique [1]. The interrogating laser is periodically shut down and the subsequent exponential decay of the on-resonance transmitted intensity is recorded to retrieve the ring-down time. In order to improve the repetability of the measurement and allow for long-term averaging, the laser is frequency locked to a cavity resonance by means of the Pound-Drever-Hall scheme[2]. The setup is sketched in fig.1
机译:演示了一种新型的基于高灵敏度表面等离子体共振(SPR)的折射率传感器,该传感器具有Kretschmann棱镜耦合装置,该装置封装在光腔中,并受到电信波长激光源的询问。在棱镜(SPR芯片)上沉积两层Au和SiO2薄层。类似于通常称为“强度调制SPR传感器”的传感器,在所示的设置中,样品的折射率变化会引起SPR中心波长的偏移,进而导致SPR芯片反射率发生变化。由于SPR芯片是腔镜之一,因此可以通过使用腔衰荡技术测量内部光子寿命来敏感地确定相应的损耗[1]。询问激光器定期关闭,并记录随后的导通传输强度的指数衰减,以获取振铃时间。为了提高测量的可重复性并允许长期平均,通过Pound-Drever-Hall方案将激光器锁频到腔谐振。该设置如图1所示。

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