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Optimizing the loss of one-dimensional photonic crystal towards high-sensitivity Bloch-surface-wave sensors under intensity interrogation scheme

机译:在强度询问方案下优化一维光子晶体对高灵敏度Bloch面波传感器的损耗

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摘要

The reflected intensity change of the Bloch-surface-wave (BSW) resonance influenced by the loss of a truncated one-dimensional photonic crystal structure is numerically analyzed and studied in order to enhance the sensitivity of the Bloch-surface-wave-based sensors. The finite truncated one-dimensional photonic crystal structure is designed to be able to excite BSW mode for water (n=1.33) as the external medium and for p-polarized plane wave incident light. The intensity interrogation scheme which can be operated on a typical Kretschmann prism-coupling configuration by measuring the reflected intensity change of the resonance dip is investigated to optimize the sensitivity. A figure of merit (FOM) is introduced to measure the performance of the one-dimensional photonic crystal multilayer structure under the scheme. The detection sensitivities are calculated under different device parameters with a refractive index change corresponding to different solutions of glycerol in de-ionized (DI)-water. The results show that the intensity sensitivity curve varies similarly with the FOM curve and the sensitivity of the Bloch-surface-wave sensor is greatly affected by the device loss, where an optimized loss value can be got. For the low-loss BSW devices, the intensity interrogation sensing sensitivity may drop sharply from the optimal value. On the other hand, the performance of the detection scheme is less affected by the higher device loss. This observation is in accordance with BSW experimental sensing demonstrations as well. The results obtained could be useful for improving the performance of the Bloch-surface-wave sensors for the investigated sensing scheme.
机译:数值分析和研究了截断的一维光子晶体结构损失对布洛赫表面波(BSW)共振的反射强度变化的影响,以增强基于布洛赫表面波的传感器的灵敏度。有限截断的一维光子晶体结构设计成能够激发水(n = 1.33)作为外部介质以及p偏振平面波入射光的BSW模式。研究了可以通过测量共振倾角的反射强度变化而在典型的克雷奇曼棱镜耦合配置上进行操作的强度询问方案,以优化灵敏度。引入品质因数(FOM)来测量该方案下的一维光子晶体多层结构的性能。检测灵敏度是在不同的设备参数下计算的,折射率的变化对应于去离子(DI)水中甘油的不同溶液。结果表明,强度灵敏度曲线与FOM曲线相似,并且Bloch面波传感器的灵敏度受器件损耗的影响很大,可以获得最佳的损耗值。对于低损耗BSW器件,强度询问感应灵敏度可能会从最佳值急剧下降。另一方面,较高的设备损耗对检测方案的性能影响较小。此观察结果也与BSW实验感测演示一致。所获得的结果对于改善Bloch面波传感器的性能对于研究的传感方案可能是有用的。

著录项

  • 来源
    《Advanced sensor systems and applications VII》|2016年|100250w.1-100250w.6|共6页
  • 会议地点 Beijing(CN)
  • 作者单位

    School of Electronic Engineering, Tianjin University of Technology and Education, 1310 Dagu South Rd., Tianjin, China 30022;

    School of Electronic and Information Engineering, Beihang University, 37 Xueyuan Rd, Beijing, China 100191;

    School of Electronic and Information Engineering, Beihang University, 37 Xueyuan Rd, Beijing, China 100191;

    School of Electronic Engineering, Tianjin University of Technology and Education, 1310 Dagu South Rd., Tianjin, China 30022;

    School of Electronic Engineering, Tianjin University of Technology and Education, 1310 Dagu South Rd., Tianjin, China 30022;

    School of Electronic and Information Engineering, Beihang University, 37 Xueyuan Rd, Beijing, China 100191;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bloch surface waves; optical sensor; photonic crystals; loss;

    机译:Bloch表面波;光学传感器光子晶体;失利;

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