Defect‐State Lasing in Photonic Lattices of Metal–Organic Microcavities

Defect‐State Lasing in Photonic Lattices of Metal–Organic Microcavities
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金属有机微腔光子晶格中的缺陷状态激光

DOI:
10.1002/adpr.202000116
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发表时间:
2020
期刊:
影响因子:
--
通讯作者:
Karl Leo
Karl Leo
中科院分区:
--
文献类型:
--
作者:
Mona Kliem;Thomas Kiel;Andreas Mischok;Stefan Meister;Hartmut Fröb;Kurt Busch;Karl Leo

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光子带结构工程已经发展成为控制微腔中光子和极化激元的发射和相互作用的重要技术。在这里,激光从缺陷态(DS)的光子Kronig-Penney结构嵌入到金属有机MCs被证明。与与光子带相关的更多离域激光态相比,这些DS表现出甚至低于无金属腔的激光阈值的改进的激光阈值。这些DS的特性是通过基于间断Galerkin时域方法的完整电动力学计算确定的。
Photonic band structure engineering has developed into an important technique for controlling the emission and interaction of photons and polaritons in microcavities (MCs). Herein, lasing from defect states (DSs) in photonic Kronig–Penney structures embedded into metal–organic MCs is demonstrated. As compared to the more delocalized lasing states associated with photonic bands, these DSs exhibit improved lasing thresholds that lie even below the lasing threshold of the metal‐free cavity. The characteristics of these DSs are determined via full electrodynamic computations based on the discontinuous Galerkin time‐domain method.
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