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Atomic-Scale Light Coupling Control in Ultrathin Photonic Nanomembranes

Atomic-Scale Light Coupling Control in Ultrathin Photonic Nanomembranes

来源:Arxiv_logoArxiv
英文摘要

Atomic layer materials have emerged as essential building blocks for next generation quantum and semiconductor technologies, where atomic scale control over light matter interactions is critical. However, their inherently small optical interaction volume poses fundamental challenges for efficient integration into quantum and nanophotonic devices. Addressing this limitation requires the development of photonic platforms that can effectively enhance atomic-scale optical coupling. To this end, air suspended nanomembranes with extreme thinness and minimal radiative loss offer an ideal framework for integrating atomic layer materials into photonic systems. Here, we demonstrate an ultrathin freestanding photonic nanomembrane with a thickness down to 29 nm comparable to that of atomic layer materials enabling atomic scale control of light coupling. This architecture supports strong field confinement at the surface and significantly enhances light matter interaction. Through the integration of atomic layer material, we achieve angstrom level thickness modulation, where a single atomic-layer-deposition cycle corresponding to a thickness increment of 0.65 angstrom results in a 0.09 nm shift in the high Q resonance. High-resolution spatial mapping further confirms uniform and deterministic resonance tuning across the nanomembrane surface. This approach provides a scalable and versatile route for atomic-scale light coupling, effectively overcoming the limitations of conventional photonics and enabling progress in quantum photonics, 2D optoelectronics, and advanced semiconductor technologies.

Chih-Zong Deng、Jui-Han Fu、Yen-Ju Wu、Kuniaki Konishi、Vincent Tung、Chun-Wei Chen、Ya-Lun Ho

物理学半导体技术光电子技术自然科学研究方法

Chih-Zong Deng,Jui-Han Fu,Yen-Ju Wu,Kuniaki Konishi,Vincent Tung,Chun-Wei Chen,Ya-Lun Ho.Atomic-Scale Light Coupling Control in Ultrathin Photonic Nanomembranes[EB/OL].(2025-08-05)[2025-08-07].https://arxiv.org/abs/2507.23265.点此复制

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