Surface Topological Plexcitons: Strong Coupling in a Bi2Se3 Topological Insulator Nanoparticle-Quantum Dot Molecule

Optics Pub Date : 2024-02-27 DOI:10.3390/opt5010008
George Kountouris, V. Yannopapas
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Abstract

Strong coupling of quantum states with electromagnetic modes of topological matter offer an interesting platform for the exploration of new physics and applications. In this work, we report a novel hybrid mode, a surface topological plexciton, arising from strong coupling between the surface topological plasmon mode of a Bi2Se3 topological insulator nanoparticle and the exciton of a two-level quantum emitter. We study the power absorption spectrum of the system by working within the dipole and rotating-wave approximations, using a density matrix approach for the emitter, and a classical dielectric-function approach for the topological-insulator nanoparticle. We show that a Rabi-type splitting can appear in the spectrum suggesting the presence of strong coupling. Furthermore, we study the dependence of the splitting on the separation of the two nanoparticles as well as the dipole moment of the quantum emitter. These results can be useful for exploring exotic phases of matter, furthering research in topological insulator plasmonics, as well as for applications in the far-infrared and quantum computing.
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表面拓扑反射子:Bi2Se3 拓扑绝缘体纳米粒子-量子点分子中的强耦合作用
量子态与拓扑物质电磁模式的强耦合为探索新物理和应用提供了一个有趣的平台。在这项工作中,我们报告了一种新的混合模式--表面拓扑质子,它产生于 Bi2Se3 拓扑绝缘体纳米粒子的表面拓扑质子模式与两级量子发射器的激子之间的强耦合。我们采用偶极子和旋转波近似方法研究了该系统的功率吸收光谱,对发射器采用密度矩阵方法,对拓扑绝缘体纳米粒子采用经典介电函数方法。我们发现,光谱中会出现拉比型分裂,这表明存在强耦合。此外,我们还研究了分裂与两个纳米粒子的分离以及量子发射器偶极矩的关系。这些结果有助于探索物质的奇异相态,促进拓扑绝缘体等离子体学的研究,以及在远红外和量子计算领域的应用。
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