材料科学
激光阈值
罗丹明6G
光电子学
激光器
涂层
光子学
防反射涂料
波长
图层(电子)
聚合物
光学
激光功率缩放
半导体激光器理论
罗丹明B
光学涂层
干扰(通信)
纳米棒
分布反馈激光器
光通信
染料激光器
灵敏度(控制系统)
作者
X Y Wang,Jiayao Liu,Zimeng Zeng,Hongyu Yuan,Z L Li,Zelong He,Wenping Gong,Zhaona Wang
摘要
ABSTRACT Reconstructable and sustainable microcavity lasers are highly desirable for next‐generation integrated photonics. Here, we report a reconstructable, low‐threshold quasi bound state in the continuum (quasi‐BIC) laser fabricated via low‐cost, high‐throughput interference lithography. By introducing a polyvinyl alcohol (PVA) coating on a dye‐doped photonic crystal, we suppress out‐of‐plane symmetry breaking, which reinforces optical confinement and reduces the lasing threshold. The quasi‐BIC modes are further tuned through tailoring the refractive‐index of the PVA layer by using Kramers–Kronig (K–K) relation via Rhodamine 6G doping, demonstrating a wavelength shift of 7.14 nm and a sensitivity of 215 nm RIU − 1 as a sensing prob. More importantly, lasing modes are reversibly tuned via precisely controlling the coating thickness. Exploiting the dissolving and re‐coating process, the laser is repeatedly reconstructed while maintaining performance. This work provides a sustainable and adaptive platform for sensing and reconstructable photonic devices.
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