论文标题

局部D-D电子激发的振动相干控制

Vibrational coherent control of localized d-d electronic excitation

论文作者

Marciniak, Alexandre, Marcantoni, Stefano, Giusti, Francesca, Glerean, Filippo, Sparapassi, Giorgia, Nova, Tobia, Cartella, Andrea, Latini, Simone, Valiera, Francesco, Rubio, Angel, Brink, Jeroen van den, Benatti, Fabio, Fausti, Daniele

论文摘要

解决量子相干性在不同物质成分(电子,声音和自旋)之间相互作用中的作用是了解过渡金属氧化物和设计具有新功能的复杂材料的关键步骤。在这里,我们使用模型边缘共享绝缘金属氧化金属氧化物(CugeO3)中现场D-D电子跃迁的一致振动控制来单击电子波偶联中振动相干性的影响。通过比较基于高频和低频超短泵的时间结构域实验与声子辅助吸收的完全量子描述,我们可以区分与不连贯的热晶格波动相关的过程与由原子相干运动驱动的过程。特别是,虽然声子浴的热波动均匀地增加了电子吸收,但声子模式的共振激发也以光诱导的透明度产生,这是由振动运动连贯控制的。

Addressing the role of quantum coherence in the interplay between the different matter constituents (electrons, phonons and spin) is a critical step towards understanding transition metal oxides and design complex materials with new functionalities. Here we use coherent vibrational control of onsite d-d electronic transitions in a model edge-sharing insulating transition metal oxide (CuGeO3) to single-out the effects of vibrational coherence in electron-phonon coupling. By comparing time domain experiments based on high and low frequency ultrashort pumps with a fully quantum description of phonon assisted absorption, we could distinguish the processes associated to incoherent thermal lattice fluctuations from those driven by the coherent motion of the atoms. In particular, while thermal fluctuation of the phonon bath uniformly increases the electronic absorption, the resonant excitation of phonon modes results also in light-induced transparency which is coherently controlled by the vibrational motion.

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