激光阈值
极化(电化学)
物理
拓扑(电路)
光子晶体
多极展开
拓扑量子数
光子学
位置和动量空间
激光器
光学
量子力学
数学
组合数学
物理化学
化学
作者
Sughra Mohamed,Jie Wang,Heikki Rekola,Janne Heikkinen,Benjamin O. Asamoah,Lei Shi,Tommi K. Hakala
标识
DOI:10.1002/lpor.202100574
摘要
Abstract Recently, optical bound states in continuum (BICs) incorporated with optical gain have been reported to exhibit lasing. Here, it is shown that each of the four BICs supported by C symmetric photonic crystal slab can be made to lase, allowing the control over the topological charge of the resulting laser beam. The type of each BIC and their topological charges are identified by imaging the far‐field polarization vortices of the lasing signal. Results are compared with experimentally obtained dispersions, finite element method simulations, and multipole decomposition method based on the microscopic polarization currents in the photonic crystal plane. A demonstration of multimode lasing of two non‐degenerate BICs with opposite topological charges is presented. The momentum space overlap of the BICs results in a unique polarization pattern. The study provides a generalizable example for engineering the topological properties of coherent light.
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