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Long-Propagating Ghost Phonon Polaritons Enabled by Selective Mode Excitation

Optics 2024-08-27 v2

Abstract

The precise control of phonon polaritons(PhPs) is essential for advancements in nanophotonic applications like on-chip optical communication and quantum information processing. Ghost hyperbolic phonon polaritons (g-HPs), which have been recently discovered, feature in-plane hyperbolic dispersion and oblique wavefronts, enabling long-range propagation. Despite their potential, controlling the directionality and selective excitation of g-HPs remains challenging. Our research demonstrates that modifying the shape of the launching micro/nano antenna can achieve this control. Using an asymmetric triangular gold antenna on a calcite crystal surface, we achieve highly directional g-HP excitation by selectively targeting specific polariton modes. Additionally, the mode of g-HPs can be adjusted by changing the excitation wavelength or rotating the antenna. Remarkably, our near-field imaging experiments show g-HP propagation over distances exceeding 35 micrometers, more than twice the length reported in previous studies. This work merges g-HP theory with structural engineering, enhancing the control over g-HPs and paving the way for innovative applications in mid-IR optoelectronics.

Keywords

Cite

@article{arxiv.2408.12497,
  title  = {Long-Propagating Ghost Phonon Polaritons Enabled by Selective Mode Excitation},
  author = {Manuka P. Suriyage and Qingyi Zhou and Hao Qin and Xueqian Sun and Zhuoyuan Lu and Stefan A. Maier and Zongfu Yu and Yuerui Lu},
  journal= {arXiv preprint arXiv:2408.12497},
  year   = {2024}
}
R2 v1 2026-06-28T18:20:59.238Z