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首页> 外文期刊>Physics Letters, A >Study on Fano resonance regulating mechanism of Si contained metal–dielectric–metal waveguide coupled rectangular cavity
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Study on Fano resonance regulating mechanism of Si contained metal–dielectric–metal waveguide coupled rectangular cavity

机译:Si含有金属介质 - 金属波导耦合矩形腔的FANO谐振调节机理研究

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摘要

AbstractBased on the transmission properties and the photon location characteristics of the Surface plasmon polaritons (SPPs) sub-wavelength structure, a metal–dielectric–metal (MDM) waveguide coupled rectangular cavity structure is proposed. Dielectric material silicon (Si) is introduced in the structure to overcome the high loss of the metal materials. Due to the large refractive index difference between silicon and air, the reflections of SPPs and the incident light at the two ends of the Si–air–Si cavity in the sub-wavelength structure are small meanwhile the transmissions are high, which leads to a wider continuous spectrum. And when the SPPs enter the rectangular cavity in the metal and the phase matching condition is satisfied, the resonance will occur and a narrow transmission spectrum peak will be generated. Through the coupling of the wider continuous state and the narrower isolated state, the Fano resonance will occur. According to the phase-matching condition of resonance, the relationship model between the effective refractive index of the waveguide and the wavelength shift of the resonant peak is established. And with the increase of the lengthLof the rectangular cavity, the red shift of the resonant peak will occur, which can improve the sensitivity of the sensing structure. The influences of structural parametersL,Wandgon Fano resonance are analyzed respectively to optimize the structural parameters by the finite element methods. The Figure of merit (FOM) value can be adjusted and controlled with the change of the structural parametersL,Wandg. The FOM value of the optimized structure parameters can attain to1.19×104. The optimized structure parameters are adopted to discuss the sensing performances of the structure. The results show that the sensitivity of the sensor is about 1612 nm/RIU. The waveguide structure mentioned above can provide effective theoretical references for the miniaturization and high integration of photonic devices and refractive index sensing.Highlights?A Si contained MDM waveguide coupled rectangular cavity structure is proposed.?Through the coupling of the wider continuous state and the narrower isolated state, the Fano resonance will occur.?The structure can improve the sensitivity of the sensing structure.?The Figure of merit value can be adjusted and controlled with the change of the structural parameters.]]>
机译:<![CDATA [ 抽象 基于传输特性和表面等离子体激元的光子位置特性(SPPS)亚波长结构,金属 - 电介质 - 金属( MDM)波导耦合矩形的空腔结构提出。电介质材料的硅(Si)在该结构中引入以克服金属材料的高损耗。由于硅与空气之间的折射率差大,SPP的反射和入射光在亚波长结构中的Si-空气硅腔的两个端部是小的同时的传输是高,这导致了更宽的连续光谱。并且当所述的SPP在金属进入矩形腔和相位匹配条件被满足时,将发生谐振和窄透射光谱峰将会产生。通过更宽的连续状态,而较窄分离状态的耦合,将发生的Fano共振。根据共振的相位匹配条件时,波导的有效折射率和所述共振峰的波长漂移之间的关系模型。并与长度的增加矩形腔的,将发生共振峰的红移,这可以提高感测结构的灵敏度。结构参数的影响 w ^ 上的Fano共振分别进行分析,以通过有限元方法优化的结构参数。品质因数(FOM)值可以被调整,并与结构参数的变化控制→ w ^ 。优化的结构参数的FOM值可达到至 1.19 × 10 4 。优化结构参数,采用讨论结构的传感性能。该结果表明,该传感器的灵敏度是大约1612纳米/ RIU。波导结构如上所述可以提供小型化和高集成光子器件和折射率检测的有效的理论参考 亮点 甲硅载MDM波导耦合矩形的空腔结构,提出了 <?CE:对ID =“pr0020”视图=“所有”>,通过较宽的连续状态的联接,而较窄分离状态时,将发生的Fano共振 该结构可以提高感测结构的灵敏度 指标值的图可以被调整并用的结构参数的变化来控制 < / CE:列表项> ]]>

著录项

  • 来源
    《Physics Letters, A》 |2017年第40期|共5页
  • 作者单位

    Hebei Province Key Laboratory of Test/Measurement Technology and Instrument School of Electrical Engineering Yanshan University;

    Hebei Province Key Laboratory of Test/Measurement Technology and Instrument School of Electrical Engineering Yanshan University;

    Hebei Province Key Laboratory of Test/Measurement Technology and Instrument School of Electrical Engineering Yanshan University;

    Hebei Province Key Laboratory of Test/Measurement Technology and Instrument School of Electrical Engineering Yanshan University;

    Hebei Province Key Laboratory of Test/Measurement Technology and Instrument School of Electrical Engineering Yanshan University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

    MDM waveguide; Fano resonance; Rectangular cavity; FOM;

    机译:MDM波导;Fano共振;矩形腔;FOM;

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