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Fluorescence from a Quantum Dot and Metallic Nanosphere Hybrid System

机译:来自量子点和金属纳米杂交系统的荧光

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We present energy absorption and interference in a quantum dot-metallic nanosphere system embedded on a dielectric substrate. A control field is applied to induce dipole moments in the nanosphere and the quantum dot, and a probe field is applied to monitor absorption. Dipole moments in the quantum dot or the metal nanosphere are induced, both by the external fields and by each other's dipole fields. Thus, in addition to direct polarization, the metal nanosphere and the quantum dot will sense one another via the dipole-dipole interaction. The density matrix method was used to show that the absorption spectrum can be split from one peak to two peaks by the control field, and this can also be done by placing the metal sphere close to the quantum dot. When the two are extremely close together, a self-interaction in the quantum dot produces an asymmetry in the absorption peaks. In addition, the fluorescence efficiency can be quenched by the addition of a metal nanosphere. This hybrid system could be used to create ultra-fast switching and sensing nanodevices.
机译:我们呈现嵌入在介电基板上的量子点金属纳米域系统中的能量吸收和干扰。施用控制场以诱导纳米球和量子点中的偶极矩,探测器用于监测吸收。偶像矩或金属纳米层的偶极矩被外部领域和彼此的偶极领域诱导。因此,除了直接偏振之外,金属纳米球和量子点将通过偶极偶极相互作用彼此感知。密度矩阵方法用于表明吸收光谱可以通过控制场从一个峰值分开到两个峰,这也可以通过将金属球放置在靠近量子点来完成。当两者极其靠近时,量子点中的自相互作用在吸收峰值中产生不对称性。另外,可以通过添加金属纳米晶体来淬灭荧光效率。该混合系统可用于创建超快速切换和感测纳米纳米型。

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