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All-dielectric cylindrical nanoantennas in the visible range

机译:全电介质圆柱形纳米天线在可见光范围内

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摘要

All-dielectric nanoparticles have attained a lot of attention owing to the lesser loss and better quality than their metallic counterparts. As a result, they perceive applications in the field of nanoantennas, photovoltaics and nanolasers. In the dielectric nanoparticles, the electric and magnetic dipoles are created in dielectric nanoparticles when they interact with the light of a particular frequency. Kerker's type scattering is obtained where electric and magnetic dipoles interfere. In our design, Silicon cylindrical nanoparticles having radius of 70 run and length 120 nm have been considered. The propagation of light is taken along the length of the cylinder. The scattering cross section has been obtained and plotted with respect to the wavelength. At the peaks of scattering spectra, electric and magnetic dipoles are created at the wavelengths of 510 nm and 600 nm, respectively. Both dipoles interfere at the wavelengths of 550 nm and 645 nm. At these wavelengths, far field scattering pattern has been calculated. At the wavelength 645 nm, forward scattering takes place because electric and magnetic dipoles are in phase at this wavelength. Further, directivity is enhanced by taking the planar array of the nanoparticles. It has been observed that directivity increases by increasing the size of the array. Also, there is an increase in the directivity by increasing the gap between the nanoparticles. This enhancement of directivity can lead to the design of all dielectric cylindrical nanoantennas.
机译:全介电纳米粒子由于比金属纳米粒子的损耗小,质量更好而受到了广泛的关注。结果,他们意识到在纳米天线,光伏和纳米激光领域的应用。在介电纳米粒子中,当电和磁偶极子与特定频率的光相互作用时,会在介电纳米粒子中产生电偶极子。在电偶极子和磁偶极子干涉的情况下,获得了Kerker型散射。在我们的设计中,已考虑了半径为70纳米,长度为120 nm的硅圆柱形纳米颗粒。光的传播是沿着圆柱体的长度进行的。已经获得了散射截面,并相对于波长作图。在散射光谱的峰值处,分别在510 nm和600 nm的波长处产生了电和磁偶极子。两个偶极子都在550 nm和645 nm的波长处发生干扰。在这些波长下,已计算出远场散射图。在波长645 nm处会发生前向散射,因为电偶极子和磁偶极子在该波长下同相。此外,通过采用纳米颗粒的平面阵列来增强方向性。已经观察到,方向性通过增加阵列的尺寸而增加。而且,通过增加纳米颗粒之间的间隙,方向性也增加了。方向性的这种增强可以导致所有介电圆柱纳米天线的设计。

著录项

  • 来源
    《Nanophotonic materials XIV》|2017年|103440K.1-103440K.6|共6页
  • 会议地点 San Diego(US)
  • 作者单位

    TIFAC-center of Relevance and Excellence in Fiber Optics and Optical Communication, Department of Applied Physics, Delhi Technological University (Formerly Delhi College of Engineering, University of Delhi), Bawana Road, Delhi-110042, India;

    TIFAC-center of Relevance and Excellence in Fiber Optics and Optical Communication, Department of Applied Physics, Delhi Technological University (Formerly Delhi College of Engineering, University of Delhi), Bawana Road, Delhi-110042, India;

    TIFAC-center of Relevance and Excellence in Fiber Optics and Optical Communication, Department of Applied Physics, Delhi Technological University (Formerly Delhi College of Engineering, University of Delhi), Bawana Road, Delhi-110042, India;

    TIFAC-center of Relevance and Excellence in Fiber Optics and Optical Communication, Department of Applied Physics, Delhi Technological University (Formerly Delhi College of Engineering, University of Delhi), Bawana Road, Delhi-110042, India;

    TIFAC-center of Relevance and Excellence in Fiber Optics and Optical Communication, Department of Applied Physics, Delhi Technological University (Formerly Delhi College of Engineering, University of Delhi), Bawana Road, Delhi-110042, India,CSIR-Central Scientific Instruments Organisation, Sector 30 C, Chandigarh-160 030, India;

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

    Forward scattering; All-dielectric; nanoantennas; directivity;

    机译:前向散射;全介电;纳米天线方向性;

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