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可调小角度非互易辐射与GST–外尔半金属谐振结构的宽带吸收
Tunable small-angle nonreciprocal radiation and broadband absorption in a GST–Weyl semimetal resonant structure
| 作者 | Ye Ming Qing · Yue Gou · Jun Wu · Yongze Ren · Jiao Liu · Zhaoyan Yang · Shunsuke Murai · Koichi Okamoto |
| 期刊 | Applied Physics Letters |
| 出版日期 | 2026年2月 |
| 卷/期 | 第 128 卷 第 8 期 |
| 技术分类 | 拓扑与电路 |
| 技术标签 | 宽禁带半导体 多物理场耦合 有限元仿真 热仿真 |
| 相关度评分 | ★★ 2.0 / 5.0 |
| 关键词 |
语言:
中文摘要
本文提出一种GST–外尔半金属混合谐振结构,通过GST相变实现热可调非互易辐射(5°小角度,14.09 μm,非互易系数0.95)与宽带吸收(12–15 μm)双功能切换,突破静态非互易器件局限,适用于自适应热光子调控。
English 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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SunView 深度解读
该研究聚焦红外波段相变光子器件,在光伏热管理、智能红外防护或光谱选择性辐射调控等前沿方向具潜在启发价值,但与阳光电源核心产品(如组串式逆变器、ST系列PCS、PowerTitan储能系统)无直接技术关联。当前未涉及电力电子拓扑、MPPT、并网控制或电化学储能系统集成。建议关注其相变材料热-光耦合建模方法,未来或可借鉴于逆变器/PCS功率模块的多物理场热-电协同仿真优化,提升高温工况下SiC/GaN器件可靠性设计能力。