Reconfigurable chiral exceptional point and tunable non-reciprocity in a non-Hermitian system with phase-change material

  • Chen C
  • Dong D
  • Zhao L
  • et al.
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Abstract

Non-Hermitian optics has emerged as a feasible and versatile platform to explore many extraordinary wave phenomena and novel applications. However, owing to ineluctable systematic errors, the constructed non-Hermitian phenomena could be easily broken, thus leading to a compromising performance in practice. Here we theoretically proposed a dynamically tunable mechanism through GST-based phase-change material (PCM) to achieve a reconfigurable non-Hermitian system, which is robust to access the chiral exceptional point (EP). Assisted by PCM that provides tunable coupling efficiency, the effective Hamiltonian of the studied doubly-coupled-ring-based non-Hermitian system can be effectively modulated to resist the external perturbations, thus enabling the reconfigurable chiral EP and a tunable non-reciprocal transmission. Moreover, such tunable properties are nonvolatile and require no static power consumption. With these superior performances, our findings pave a promising way for reconfigurable non-Hermitian photonic devices, which may find applications in tunable on-chip sensors, isolators and so on.

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Chen, C., Dong, D., Zhao, L., Liu, Y., Hu, X., Li, X., & Fu, Y. (2022). Reconfigurable chiral exceptional point and tunable non-reciprocity in a non-Hermitian system with phase-change material. Optics Express, 30(15), 27812. https://doi.org/10.1364/oe.459860

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