Long Teng, Ren Jiahuan, Li Peng, Yun Feng, Malpuech Guillaume, Solnyshkov Dmitry, Fu Hongbing, Li Feng, Liao Qing
Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry, <a href="https://ror.org/005edt527">Capital Normal University</a>, Beijing 100048, People's Republic of China.
College of Physics Science and Technology, <a href="https://ror.org/01p884a79">Hebei University</a>, Baoding 071002, People's Republic of China.
Phys Rev Lett. 2024 Sep 20;133(12):123802. doi: 10.1103/PhysRevLett.133.123802.
The polarization control of micro- and nanolasers is an important topic in nanophotonics. Up to now, the simultaneous generation of two distinguishable orthogonally polarized lasing modes from a single organic microlaser remains a critical challenge. Here, we demonstrate simultaneously orthogonally polarized dual lasing from a microcavity filled with an organic single crystal exhibiting selective strong coupling. We show that the non-Hermiticity due to polarization-dependent losses leads to the formation of real and imaginary Fermi arcs with exceptional points. Simultaneous orthogonally polarized lasing becomes possible thanks to the eigenstate mixing by the photonic spin-orbit coupling at the imaginary Fermi arcs. Our work provides a novel way to develop linearly polarized lasers and paves the way for the future fundamental research in topological photonics, non-Hermitian optics, and other fields.
微纳激光器的偏振控制是纳米光子学中的一个重要课题。到目前为止,从单个有机微激光器同时产生两种可区分的正交偏振激光模式仍然是一个关键挑战。在此,我们展示了从填充有表现出选择性强耦合的有机单晶的微腔中同时产生正交偏振双激光。我们表明,由于偏振相关损耗导致的非厄米性会导致具有奇异点的实部和虚部费米弧的形成。由于在虚部费米弧处光子自旋 - 轨道耦合引起的本征态混合,使得同时产生正交偏振激光成为可能。我们的工作为开发线性偏振激光器提供了一种新方法,并为拓扑光子学、非厄米光学及其他领域的未来基础研究铺平了道路。