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March 6, 2026Science Advances2 citationsOpen Access

Unidirectional exceptional point of reflectionless states in a magnonic mirror array

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ZWZheng WangYPYuan-Peng PengYWYi-Pu Wang

Key Points

  • The aim is to demonstrate a unidirectional reflectionless exceptional point (RL EP) in a magnonic mirror array.
  • Engineered collective states in an anti-Bragg magnonic mirror array
  • Broken inversion symmetry using a giant spin ensemble
  • Coupling to a waveguide at three spatially separated points
  • Unidirectional RL EP achieved, leading to significant spectral changes
  • Reflection spectrum flattens and broadens beyond typical profiles
  • Exposure of dark state behaviors not accessible through conventional measurements

Abstract

Exceptional points (EPs) in non-Hermitian systems are singularities where both eigenvalues and eigenvectors coalesce. In scattering systems, EPs correspond to the merging of scattering states, leading to reflectionless (RL) behavior. A reflectionless exceptional point (RL EP) arises when two RL states further coalesce, yielding an anomalous quartic spectral response. While RL EPs have been explored in bidirectional systems, their unidirectional realization remains elusive. Here, we experimentally demonstrate a unidirectional RL EP by engineering collective states in an anti-Bragg magnonic mirror array. Inversion symmetry is broken using a giant spin ensemble that couples to a waveguide at three spatially separated points, enabling unidirectional RL. At the RL EP, the reflection spectrum flattens and broadens substantially beyond the Lorentzian profile. The observed spectral valleys also expose dark state behaviors that are typically inaccessible through conventional measurements. Our results provide a route toward controlling collective coherence in open systems and developing broadband unidirectional devices.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69aa7066531e4c4a9ff5a1c8https://doi.org/10.1126/sciadv.aea6000
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