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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Surface plasmon resonance demodulation by optical ring-down cavity crossMark technology
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Surface plasmon resonance demodulation by optical ring-down cavity crossMark technology

机译:利用光学衰荡腔crossMark技术的表面等离子体共振解调

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摘要

The field of plasmonics has experience a renaissance in recent years by providing a large variety of new physical effects and applications. Surface plasmon polaritons, i.e. the collective electron oscillations at the interface of a metal/dielectric, may bridge the gap between electronic and photonic devices, provided a fast switching mechanism is identified. Here, we presents a cavity ring-down technique called SPR sensor for conducting demodulated applications. Theoretical derivation indicates the conditions in which the laser frequency and linewidth remain unchanged, the optical field strength that mainly depends on the cavity mirror reflectivity, and the PZT scanning speed. Simulated experiments show that higher ring-down cavity precision, smaller anti-cross linewidth, and less time for increases and ring-downs are observed when the reflection coefficient is large. As a photon leaves the ring-down cavity, the photon quantities decrease again. The relative light intensity in the ring-down cavity is large when the PZT scanning speed is small. The application of a demodulation system shows that the ring-down cavity technology can largely improve the sensitivity of SPR sensors. The demodulation speed can also reach the ms level. A demodulation system is important for biochemical reaction kinetics and remote monitoring applications. Crown Copyright (c) 2015 Published by Elsevier GmbH. All rights reserved.
机译:通过提供各种新的物理效果和应用,等离子体技术领域近年来经历了复兴。表面等离激元极化子,即在金属/电介质界面处的集体电子振荡,可以在电子和光子器件之间架起桥梁,只要能确定一种快速切换机制即可。在这里,我们介绍了一种用于进行解调应用的称为SPR传感器的腔衰荡技术。理论推导指出了激光频率和线宽保持不变的条件,主要取决于腔镜反射率的光场强度以及PZT扫描速度的条件。仿真实验表明,当反射系数较大时,可以观察到较高的振型腔精度,较小的抗交叉线宽以及增加和振型的时间。随着光子离开衰荡腔,光子数量再次减少。当PZT扫描速度较小时,衰荡腔中的相对光强度较大。解调系统的应用表明,环形腔技术可以大大提高SPR传感器的灵敏度。解调速度也可以达到毫秒级。解调系统对于生化反应动力学和远程监控应用很重要。 Crown版权所有(c)2015,由Elsevier GmbH发布。版权所有。

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