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Self-reference plasmonic sensors based on double Fano resonances

机译:自我参照基于双电浆传感器法诺共振

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High-sensitivity plasmonic refractive index sensors show great applications in the areas of biomedical diagnostics, healthcare, food safety, environmental monitoring, homeland security, and chemical reactions. However, the unstable and complicated environments considerably limit their practical applications. By employing the independent double Fano resonances in a simple metallic grating, we experimentally demonstrate a self-reference plasmonic sensor, which significantly reduces the error contributions of the light intensity fluctuations in the long-distance propagation and local temperature variations at the metallic grating, and the detection accuracy is guaranteed. The numerical simulation shows that the two Fano resonances have different origins and are independent of each other. As a result, the left Fano resonance is quite sensitive to the refractive index variations above the metal surface, while the right Fano resonance is insensitive to that. Experimentally, a high figure of merit (FOM) of 31 RIU-1 and a FOM* of 860 RIU-1 are realized by using the left Fano resonance. More importantly, by using the right Fano resonance as a reference signal, the influence of the light intensity fluctuations and local temperature variations is monitored and eliminated in the experiment. This simple self-reference plasmonic sensor based on the double Fano resonances may find important applications in highly-sensitive and accurate sensing under unstable and complicated environments, as well as multi-parameter sensing.
机译:高灵敏度电浆折射率传感器显示大领域的应用生物医学诊断、医疗、食品安全、环境监测、国土安全部和化学反应。复杂环境大大限制他们实际的应用程序。在一个简单的独立双范诺产生共振金属光栅,我们实验演示自我指涉电浆传感器大大降低了误差的贡献光强度的波动长距离传播和当地的温度变化的金属光栅,检测精度得到保证。仿真表明,该两个法诺共振有不同的起源和独立的对方。折射率很敏感吗变化在金属表面,而法诺共振是不敏感的。实验,高品质因数(FOM)31 RIU-1和FOM * 860 RIU-1实现使用左范诺共振。通过使用正确的法诺共振作为参考信号,光强度的影响波动和当地的温度变化监控和消除实验。简单的自我指涉电浆传感器基于双法诺共振可能会发现很重要应用在高度敏感的和准确的遥感在不稳定的和复杂的环境,以及多参数传感。

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