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February 25, 2026Applied Physics Letters5 citations

Tunable small-angle nonreciprocal radiation and broadband absorption in a GST–Weyl semimetal resonant structure

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YQYe Ming QingYGYue GouJWJun Wu

Key Points

  • The aim is to develop a hybrid GST-Weyl semimetal resonant structure for tunable nonreciprocal radiation and broadband absorption.
  • Proposed a hybrid resonant structure using Weyl semimetal and GST materials.
  • Performed experiments with both amorphous and crystalline GST states.
  • Measured nonreciprocal radiation and absorption at specific wavelengths.
  • Achieved strong nonreciprocal radiation at 14.09 μm with a coefficient of 0.95 in the amorphous state.
  • Demonstrated broadband absorption across 12–15 μm when GST is crystalline.
  • Found that structural parameters can adjust the resonant wavelength and nonreciprocal performance.

Abstract

Nonreciprocal radiation is essential for advanced thermal photonics but is constrained by static performance and large incident angle requirements in current Weyl semimetal (WSM)-based devices. Here, we propose a WSM–Ge2Sb2Te5 (GST) hybrid resonant structure to achieve thermally tunable dual functionality. When GST is amorphous, the structure exhibits strong small-angle (5°) nonreciprocal radiation at 14.09 μm, with a nonreciprocity coefficient of up to 0.95, driven by coupled guided-mode and Fabry–Pérot resonances. Upon annealing, GST transforms to the crystalline state, enabling broadband high absorption across 12–15 μm with reciprocal behavior. Structural parameters modulate the resonant wavelength by adjusting the effective refractive index or optical path, while GST crystallinity significantly regulates nonreciprocal performance. This non-volatile design overcomes key limitations of static nonreciprocal devices, holding promise for adaptive energy harvesting and intelligent electromagnetic protection.

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Cite This Study

Qing et al. (2026) studied this question.

synapsesocial.com/papers/699e91eaf5123be5ed04fc9fhttps://doi.org/10.1063/5.0315340
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