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Quantum Dot-Plasmon Lasing with Controlled Polarization Patterns

机译:具有受控极化模式的量子点 - 等离子体

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摘要

The tailored spatial polarization of coherent light beams is important for applications ranging from microscopy to biophysics to quantum optics. Miniaturized light sources are needed for integrated, on-chip photonic devices with desired vector beams; however, this issue is unresolved because most lasers rely on bulky optical elements to achieve such polarization control. Here, we report on quantum dot-plasmon lasers with engineered polarization patterns controllable by near-field coupling of colloidal quantum dots to metal nanoparticles. Conformal coating of CdSe-CdS core-shell quantum dot films on Ag nanoparticle lattices enables the formation of hybrid waveguide-surface lattice resonance (W-SLR) modes. The sidebands of these hybrid modes at nonzero wavevectors facilitate directional lasing emission with either radial or azimuthal polarization depending on the thickness of the quantum dot film.
机译:相干光束的量身定制的空间极化对于从显微镜到生物物理学到量子光学的应用很重要。 具有所需矢量梁的集成的片上光子器件需要小型化光源; 然而,这个问题未得到解决,因为大多数激光依赖于庞大的光学元件来实现这种偏振控制。 在这里,我们报告具有通过胶体量子点的近场耦合到金属纳米颗粒的近场耦合来控制的量子点 - 等离子体激光器。 在Ag纳米粒子晶格上的Cdse-CDS核 - 壳量子点薄膜的保形涂层使得形成混合波导表面晶格共振(W-SLR)模式。 在非零波浪处的这些混合模式的边带促进了定向激光发射,这取决于量子点膜的厚度。

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