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Study of an Electromagnetic Wave Transmission Line Based on Coupled Dielectric Resonators

机译:基于耦合介质谐振器的电磁波传输线研究

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An analog of an optical waveguide in the form of a chain of metallic nanoparticles has been investigated using modified cylindrical dielectric resonators in the microwave band. Similar to the plasma oscillations in spherical nanoparticles, the two lowest resonances of the dielectric resonator correspond to the dipole and quadrupole oscillatory modes. It is shown that a waveguide consisting of seven resonators exhibits high frequency selective properties and relatively low loss if the resonances of the quadrupole oscillatory modes are used to form its passband. The characteristics of the investigated waveguide remain almost unchanged at its bending by 90 degrees, and the cross section of localization of the main part of the energy propagating in the waveguide is smaller than the electromagnetic wavelength by a factor of five, which approximately corresponds to the optical waveguides based on plasma oscillations in nanoparticles.
机译:在微波带中的改进的圆柱介质谐振器研究了一种金属纳米颗粒的形式的光波导的模拟。 类似于球形纳米颗粒中的等离子体振荡,介电谐振器的两个最低谐振对应于偶极和四极振荡模式。 结果表明,如果使用四极振荡模式的谐振来形成其通带,则由七个谐振器组成的波导具有高频选择性和相对低的损耗。 所研究的波导的特性在其弯曲中仍然保持不变90度,并且在波导中传播的能量的主要部分的定位的横截面小于电磁波长的五倍,这大致对应于 基于纳米颗粒等离子体振荡的光波导。

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    《Doklady. Physics》 |2019年第11期|共5页
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  • 正文语种 eng
  • 中图分类 物理学;
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