Applied Sciences (May 2020)

Extended SSH Model in Non-Hermitian Waveguides with Alternating Real and Imaginary Couplings

  • Ziwei Fu,
  • Nianzu Fu,
  • Huaiyuan Zhang,
  • Zhe Wang,
  • Dong Zhao,
  • Shaolin Ke

DOI
https://doi.org/10.3390/app10103425
Journal volume & issue
Vol. 10, no. 10
p. 3425

Abstract

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We studied the topological properties of an extended Su–Schrieffer–Heeger (SSH) model composed of a binary waveguide array with alternating real and imaginary couplings. The topological invariant of the periodic structures remained quantized with chiral symmetry even though the system was non-Hermitian. The numerical results indicated that phase transition arose when the absolute values of the two couplings were equal. The system supported a topological zero mode at the boundary of nontrivial structures when chiral symmetry was preserved. By adding onsite gain and loss to break chiral symmetry, the topological modes dominated in all supermodes with maximum absolute value of imaginary energy. This study enriches research on the SSH model in non-Hermitian systems and may find applications in optical routers and switches.

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