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- W4282923330 endingPage "5423" @default.
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- W4282923330 abstract "Femtosecond laser pulses readily produce coherent quantum beats in transient-absorption spectra. These oscillatory signals often arise from molecular vibrations and therefore may contain information about the excited-state potential energy surface near the Franck-Condon region. Here, by fitting the measured spectra of two laser dyes to microscopic models of femtosecond coherence spectra (FCS) arising from molecular vibrations, we classify coherent quantum-beat signals as fundamentals or overtones and quantify their Huang-Rhys factors and anharmonicity values. We discuss the extracted Huang-Rhys factors in the context of quantum-chemical computations. This work solidifies the use of FCS for analysis of coherent quantum beats arising from molecular vibrations, which will aid studies of molecular aggregates and photosynthetic proteins." @default.
- W4282923330 created "2022-06-16" @default.
- W4282923330 creator A5028414708 @default.
- W4282923330 creator A5042589219 @default.
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- W4282923330 creator A5074254848 @default.
- W4282923330 creator A5078206358 @default.
- W4282923330 creator A5091157113 @default.
- W4282923330 date "2022-06-09" @default.
- W4282923330 modified "2023-09-27" @default.
- W4282923330 title "Characterizing Mode Anharmonicity and Huang–Rhys Factors Using Models of Femtosecond Coherence Spectra" @default.
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