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Quantum Simulation of Multiple-Exciton Generation in a Nanocrystal by a Single Photon

机译:单光子在纳米晶体中产生多激子的量子模拟

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摘要

We have shown theoretically that efficient multiple-exciton generation (MEG) by a single photon can be observed in small nanocrystals. Our quantum simulations that include hundreds of thousands of exciton and multiexciton states demonstrate that the complex time-dependent dynamics of these states in a closed electronic system yields a saturated MEG effect on a picosecond time scale. Including phonon relaxation confirms that efficient MEG requires the exciton-biexciton coupling time to be faster than exciton relaxation time.
机译:从理论上讲,我们可以在小的纳米晶体中观察到单个光子的有效多激子产生(MEG)。我们的包含数十万个激子和多激子态的量子模拟表明,在封闭的电子系统中,这些态的复杂时变动力学在皮秒级的时间尺度上产生了饱和的MEG效应。包括声子弛豫证实了有效的MEG要求激子-比西耦合的耦合时间要比激子弛豫时间要快。

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