Sang Yun-Gang, Lu Jing-Yu, Ouyang Yun-Hao, Luan Hong-Yi, Wu Jia-Hao, Li Jia-Yong, Ma Ren-Min
State Key Lab for Mesoscopic Physics and School of Physics, Peking University, Beijing, China.
Frontiers Science Center for Nano-optoelectronic, Peking University, Beijing, China.
Nat Commun. 2022 Oct 30;13(1):6485. doi: 10.1038/s41467-022-34307-4.
Bound states in the continuum (BICs) in photonic crystals describe the originally leaky Bloch modes that can become bounded when their radiation fields carry topological polarization singularities. However, topological polarization singularities do not carry energy to far field, which limits radiation efficiencies of BICs for light emitting applications. Here, we demonstrate a topological polarization singular laser which has a topological polarization singular channel in the second Brillouin zone and a paired linearly polarized radiation channel in the first Brillouin zone. The presence of the singular channel enables the lasing mode with a higher quality factor than other modes for single mode lasing. In the meanwhile, the presence of the radiation channel secures the lasing mode with high radiation efficiency. The demonstrated topological polarization singular laser operates at room temperature with an external quantum efficiency exceeding 24%. Our work presents a new paradigm in eigenmode engineering for mode selection, exotic field manipulation and lasing.
光子晶体中的连续域束缚态(BICs)描述了原本泄漏的布洛赫模式,当它们的辐射场携带拓扑极化奇点时,这些模式可以变得局域化。然而,拓扑极化奇点不会将能量传输到远场,这限制了BICs在发光应用中的辐射效率。在这里,我们展示了一种拓扑极化奇异激光器,它在第二布里渊区有一个拓扑极化奇异通道,在第一布里渊区有一个成对的线性极化辐射通道。奇异通道的存在使得激射模式具有比其他模式更高的品质因数,可用于单模激射。同时,辐射通道的存在确保了激射模式具有高辐射效率。所展示的拓扑极化奇异激光器在室温下工作,外部量子效率超过24%。我们的工作为特征模式工程中的模式选择、奇异场操纵和激射提出了一种新范式。