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Dephasing of InAs quantum dot p-shell excitons studied using two-dimensional coherent spectroscopy

机译:使用二维相干光谱研究INAS量子点P-壳激子的脱模

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The dephasing mechanisms of p-shell and s-shell excitons in an InAs self-assembled quantum dot ensemble are examined using two-dimensional coherent spectroscopy (2DCS). 2DCS provides a comprehensive picture of how the energy level structure of dots affects the exciton dephasing rates and recombination lifetimes. We find that at low temperatures, dephasing of s-shell excitons is lifetime limited, whereas p-shell excitons exhibit significant pure dephasing due to scattering between degenerate spin states. At elevated temperatures, quadratic exciton-phonon coupling plays an important role in both s-shell and p-shell exciton dephasing. We show that multiple p-shell states are also responsible for stronger phonon dephasing for these transitions.
机译:使用二维相干光谱(2DC)检查在INAS自组装量子点集合中的p-shell和S-壳激子的去除机制。 2DCS提供了一定体的图像,圆点的能量水平结构如何影响激子脱离率和重组寿命。 我们发现,在低温下,S-壳激子的脱模是寿命有限的,而P-Shell激子因子由于脱旋状态之间的散射而表现出显着的纯粹脱模。 在高温下,二次Exciton-Phonon耦合在S-壳和P壳体激发器脱位中起重要作用。 我们表明,多个p-shell状态也负责这些转换的更强烈的声子脱位。

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