arXiv · 2409.15288
Efficient excitation transfer in an LH2-inspired nanoscale stacked ring geometry
Abstract
Subwavelength ring-shaped structures of quantum emitters exhibit outstanding radiation properties and are useful for antennas, excitation transport, and storage. Taking inspiration from the oligomeric geometry of biological light-harvesting 2 (LH2) complexes, we study here generic examples and predict highly efficient excitation transfer in a three-dimensional (3D) subwavelength concentric stacked ring structure with a diameter of 400 $nm$, formed by two-level atoms. Utilizing the quantum optical open system master equation approach for the collective dipole dynamics, we demonstrate that, depending on the system parameters, our bio-mimicked 3D ring enables efficient excitation transfer between two ring layers. Our findings open prospects for engineering other biomimetic light-matter platforms and emitter arrays to achieve efficient energy transfer.
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Arpita Pal, Raphael Holzinger, Maria Moreno-Cardoner, Helmut Ritsch. 2024-09-03. Efficient excitation transfer in an LH2-inspired nanoscale stacked ring geometry. https://doi.org/10.1088/1367-2630/adfe8a
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