Coherent vibrational dynamics in molecular bond breaking: methyl radical umbrella mode probed by femtosecond x-ray spectroscopy

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Hauptverfasser: Schröder, Christian A., Hack, John H., Edwards, Joshua L., Zhang, Zhiyu, Kenyon, J. Tyler, Wang, Qiyue, Wang, Han, Neumark, Daniel M., Leone, Stephen R.
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Veröffentlicht: 2026
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author Schröder, Christian A.
Hack, John H.
Edwards, Joshua L.
Zhang, Zhiyu
Kenyon, J. Tyler
Wang, Qiyue
Wang, Han
Neumark, Daniel M.
Leone, Stephen R.
author_facet Schröder, Christian A.
Hack, John H.
Edwards, Joshua L.
Zhang, Zhiyu
Kenyon, J. Tyler
Wang, Qiyue
Wang, Han
Neumark, Daniel M.
Leone, Stephen R.
contents We report on the observation of coherent molecular vibrations launched by the breaking of a molecular bond. The methyl radical, which is produced by $267\,\mathrm{nm}$ photodissociation of methyl iodide, is excited to high levels in its $ν_2$ ``umbrella" vibrational mode by the dissociation. The ensuing coherent vibrational dynamics are observed by measuring ultrafast time-dependent changes in the x-ray transition energy from the C$1s$ to the singly-occupied valence orbital. Due to symmetry, the real space vibrational motion appears predominantly in the x-ray energy shift at the difference frequencies of the $ν_2$ progression, although the fundamental frequencies of the $ν_2$ mode are also observed. By constructing a fully quantum-mechanical model of the dynamics the coherent superposition is rigorously characterized and the real-space motion of the radicals is reconstructed. The retrieved trajectories are dominated by pronounced quantum beating governed by the high degree of coherent excitation and the strong negative anharmonicity of the $ν_2$ mode.
format Preprint
id arxiv_https___arxiv_org_abs_2601_21949
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Coherent vibrational dynamics in molecular bond breaking: methyl radical umbrella mode probed by femtosecond x-ray spectroscopy
Schröder, Christian A.
Hack, John H.
Edwards, Joshua L.
Zhang, Zhiyu
Kenyon, J. Tyler
Wang, Qiyue
Wang, Han
Neumark, Daniel M.
Leone, Stephen R.
Atomic Physics
We report on the observation of coherent molecular vibrations launched by the breaking of a molecular bond. The methyl radical, which is produced by $267\,\mathrm{nm}$ photodissociation of methyl iodide, is excited to high levels in its $ν_2$ ``umbrella" vibrational mode by the dissociation. The ensuing coherent vibrational dynamics are observed by measuring ultrafast time-dependent changes in the x-ray transition energy from the C$1s$ to the singly-occupied valence orbital. Due to symmetry, the real space vibrational motion appears predominantly in the x-ray energy shift at the difference frequencies of the $ν_2$ progression, although the fundamental frequencies of the $ν_2$ mode are also observed. By constructing a fully quantum-mechanical model of the dynamics the coherent superposition is rigorously characterized and the real-space motion of the radicals is reconstructed. The retrieved trajectories are dominated by pronounced quantum beating governed by the high degree of coherent excitation and the strong negative anharmonicity of the $ν_2$ mode.
title Coherent vibrational dynamics in molecular bond breaking: methyl radical umbrella mode probed by femtosecond x-ray spectroscopy
topic Atomic Physics
url https://arxiv.org/abs/2601.21949