Manipulating Attosecond Charge Migration in Molecules by Optical Cavities

The ultrafast electronic charge dynamics in molecules upon photoionization while the nuclear motions are frozen is known as charge migration. In a theoretical study of the quantum dynamics of photoionized 5-bromo-1-pentene, we show that the charge migration process can be induced and enhanced by pla...

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Veröffentlicht in:Journal of the American Chemical Society 2023-07, Vol.145 (27), p.14856-14864
Hauptverfasser: Gu, Yonghao, Gu, Bing, Sun, Shichao, Yong, Haiwang, Chernyak, Vladimir Y., Mukamel, Shaul
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Sprache:eng
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Zusammenfassung:The ultrafast electronic charge dynamics in molecules upon photoionization while the nuclear motions are frozen is known as charge migration. In a theoretical study of the quantum dynamics of photoionized 5-bromo-1-pentene, we show that the charge migration process can be induced and enhanced by placing the molecule in an optical cavity, and can be monitored by time-resolved photoelectron spectroscopy. The collective nature of the polaritonic charge migration process is investigated. We find that, unlike spectroscopy, molecular charge dynamics in a cavity is local and does not show many-molecule collective effects. The same conclusion applies to cavity polaritonic chemistry.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.3c03821