Complete retrieval of attosecond photoelectron dynamics from partially-coherent states in entangled photoemission
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arXiv
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| Main Authors: | , , , , , , |
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| Format: | Preprint |
| Published: |
2024
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| _version_ | 1866911961901432832 |
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| author | Berkane, Morgan Taïeb, Richard Granveau, Gabriel Salières, Pascal Bourassin-Bouchet, Charles Lévêque, Camille Caillat, Jérémie |
| author_facet | Berkane, Morgan Taïeb, Richard Granveau, Gabriel Salières, Pascal Bourassin-Bouchet, Charles Lévêque, Camille Caillat, Jérémie |
| contents | We show that the complete photoemission dynamics in situations of electron-ion entanglement can be retrieved from photoelectron spectral measurements without information on the ion. To this end, we develop an energy-time analysis of the photoelectron's reduced density matrix based on first principles. We test and assess our approach with numerical simulations on a low dimensional model molecule in interaction with broadband composite pulses occulting the vibrational resolution. Our method is directly applicable to recent experimental schemes measuring the photoelectron reduced density matrices in atomic and molecular photoemission. Therefore, it opens a new window on the dynamics of decoherence and entanglement at the attosecond timescale. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2407_14139 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Complete retrieval of attosecond photoelectron dynamics from partially-coherent states in entangled photoemission Berkane, Morgan Taïeb, Richard Granveau, Gabriel Salières, Pascal Bourassin-Bouchet, Charles Lévêque, Camille Caillat, Jérémie Chemical Physics We show that the complete photoemission dynamics in situations of electron-ion entanglement can be retrieved from photoelectron spectral measurements without information on the ion. To this end, we develop an energy-time analysis of the photoelectron's reduced density matrix based on first principles. We test and assess our approach with numerical simulations on a low dimensional model molecule in interaction with broadband composite pulses occulting the vibrational resolution. Our method is directly applicable to recent experimental schemes measuring the photoelectron reduced density matrices in atomic and molecular photoemission. Therefore, it opens a new window on the dynamics of decoherence and entanglement at the attosecond timescale. |
| title | Complete retrieval of attosecond photoelectron dynamics from partially-coherent states in entangled photoemission |
| topic | Chemical Physics |
| url | https://arxiv.org/abs/2407.14139 |