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Circular-polarization-sensitive metamaterial based on triple-quantum-dot molecules

Kotetes Panagiotis; Jin Pei Qing; Marthaler Michael; Schön Gerd
Engineering Village
上海海事大学

摘要

We propose a new type of chiral metamaterial based on an ensemble of artificial molecules formed by three identical quantum dots in a triangular arrangement. A static magnetic field oriented perpendicular to the plane breaks mirror symmetry, rendering the molecules sensitive to the circular polarization of light. By varying the orientation and magnitude of the magnetic field one can control the polarization and frequency of the emission spectrum. We identify a threshold frequency Ω, above which we find strong birefringence. In addition, Kerr rotation and circular-polarized lasing action can be implemented. We investigate the single-molecule lasing properties for different energy-level arrangements and demonstrate the possibility of circular-polarization conversion. Finally, we analyze the effect of weak stray electric fields or deviations from the equilateral triangular geometry.

关键词

Artificial molecule Chiral metamaterial Polarization conversion Quantum dot molecules Static magnetic fields Threshold frequency Triangular arrangements Triangular geometry