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Plasmon-Exciton Interaction in Planar Nanostructures with Quantum Dots

机译:用量子点平面纳米结构的等离子体 - 激子相互作用

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The weak and strong coupling regimes of quantum dots with surface plasmons in a planar nanostructure have been studied theoretically. The rates of nonradiative energy transfer from a quantum dot to a conducting substrate and dispersion dependences of hybrid plasmon-exciton states have been calculated for different values of the parameters of the system under consideration. It has been shown that the energy transfer rates for an interband transition of an electron and for a transition of quantum dots from the exciton to the ground state can significantly exceed the rate of radiative electron-hole recombination. It has been found that, under certain conditions, the Rabi splitting can reach a value of 100 meV or greater.
机译:从理论上研究了平面纳米结构中具有表面等离子体的量子点的弱和强耦合方案。 已经计算出来自量子点到导电衬底的非相互能量转移到混合等离子体 - 激子状态的分散依赖性的分散依赖性。 已经表明,电子的间带转换和用于从激子到地位的量子点的转变的能量传递速率可以显着超过辐射电子空穴重组速率。 已经发现,在某些条件下,Rabi分裂可以达到100 meV或更大的值。

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