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Deterministic aperiodic photonic crystal with a 2D array of metallic nanoparticles as polarization-sensitive dichroic filter

机译:确定具有2D金属纳米颗粒的非周期性光子晶体作为偏振敏感的二向色滤光片

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摘要

We demonstrate the possibility of using a two-dimensional array of spheroidal metallic nanoparticles embedded in a one-dimensional photonic crystal to obtain a narrow-bandpass, polarization-sensitive dichroic filter operating in the near-UV and visible domains. The optical anisotropy of the array of identically oriented nanoparticles results in two spectrally distinct plasmon resonances independently excited for two mutually orthogonal linear polarization states of light, which ensures polarization and spectral selectivity of the composite structure. The narrow transmission bands of the filter are defect modes due to a layer located at the center of the structure and hosting the nanopartide array. In order to suppress these transmission windows, it is essential that the defect modes closely coincide with the plasmon resonances excited in the array. We show that the use of deterministic aperiodic distributed reflectors surrounding the defect layer makes it possible to adjust the spectral positions of two defect modes in two separate bandgaps in order to achieve such a coincidence. Among the various parameters governing the precise position of transmittivity windows of the filter, we establish the strong influence of the thickness of the defect layer. We also show that a strong localization of the optical field in the plane of the nanoparticle array is essential to enhance the efficiency of plasmonic excitation and obtain the desired control of the defect modes. Our study opens up possibilities for the further development of polarization-controlled nanophotonic devices.
机译:我们证明了使用嵌入一维光子晶体中的二维球体纳米颗粒的可能性,以获得在近UV和可见域中操作的窄带通,偏振敏感的二向色滤光片。相同定向的纳米颗粒的阵列的光学各向异性导致两种光谱不同的等离子体共振,对于两个相互正交的光偏振态的光独立激发,这确保了复合结构的偏振和光谱选择性。由于位于结构的中心并且托管纳米丙烯阵列的层,过滤器的窄透射带是缺陷模式。为了抑制这些传输窗口,必须与阵列中激励的等离子体共振密切相关。我们表明,使用围绕缺陷层的确定性非周期性分布式反射器的使用使得可以在两个单独的带隙中调节两个缺陷模式的光谱位置,以便实现这种巧合。在控制过滤器的透射效窗的精确位置的各种参数中,我们建立了缺陷层厚度的强烈影响。我们还表明,纳米粒子阵列平面中的光场的强烈定位对于提高等离子体激发的效率并获得所需的缺陷模式控制。我们的研究开辟了偏振控制的纳米光电装置进一步发展的可能性。

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  • 来源
    《Journal of Applied Physics》 |2020年第5期|053101.1-053101.9|共9页
  • 作者单位

    Lab-STICC (UMR 6285) CNRS ENIB 29238 Cedex 3 Brest France Technological Research Institute Ulyanovsk State University 432017 Ulyanovsk Russia;

    Lab-STICC (UMR 6285) CNRS ENIB 29238 Cedex 3 Brest France Technological Research Institute Ulyanovsk State University 432017 Ulyanovsk Russia;

    Lab-STICC (UMR 6285) CNRS ENIB 29238 Cedex 3 Brest France;

    Technological Research Institute Ulyanovsk State University 432017 Ulyanovsk Russia Kotelnikov Institute of Radio Engineering and Electronics Russian Academy of Sciences Ulyanovsk Branch 432011 Ulyanovsk Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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