4.6 Article

A long-range hybrid THz plasmonic waveguide with low attenuation loss

期刊

INFRARED PHYSICS & TECHNOLOGY
卷 80, 期 -, 页码 93-99

出版社

ELSEVIER
DOI: 10.1016/j.infrared.2016.11.007

关键词

Hybrid THz plasmonics waveguide; Microwire; Surface plasmon polariton; Propagation lengths

资金

  1. NSERC (Natural Sciences and Engineering Research Council) of Canada
  2. NSERC's CREATE (Collaborative Research And Training Experience) Program ASPIRE (Applied Science in Photonics and Innovative Research in Engineering) of Canada
  3. Grants-in-Aid for Scientific Research [15K06043] Funding Source: KAKEN

向作者/读者索取更多资源

Numerical solutions are obtained for the proposed novel hybrid terahertz plasmonic waveguide structure, namely the silicon metal silicon (SMS) waveguide. It is shown that the SMS waveguide can overcome the diffraction limit while still maintaining a sizeable propagation length. The geometric dependence of the mode characteristics of this structure is analyzed in detail, showing strong confinement and low loss with propagation lengths exceeding 14 mm at normalized mode areas of 1.72 x 10(-2). By using the FEM method (Comsol), the guiding properties of the hybrid terahertz surface plasmon polariton (HTSPP) waveguide are numerically analyzed at the THz frequency, and a combination of double-structured comparisons of the best features of the terahertz plasmonic waveguide is made. Depending on the height used and how the mode confinement is measured, various modal designs, such as double microwire structures, are developed. The structures indicate that we verified the possibility of low attenuation loss of hybrid THz plasmonics propagation. The effective mode area A(eff), energy distribution, and propagation length L-p, versus height for waveguides with Si microwire and SiO2 are shown. The numerical calculation results reveal a potential for use in applications such as optical force in trapping and transporting biomolecules, and in high-density integrated circuits. (C) 2016 Elsevier B.V. All rights reserved.

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