Publication: Structural dynamics in quantum solids. II. Real-time probing of the electronic bubble formation in solid hydrogens
Structural dynamics in quantum solids. II. Real-time probing of the electronic bubble formation in solid hydrogens
cris.lastimport.scopus | 2024-09-04T09:21:54Z | |
cris.legacyId | 80569 | |
cris.virtual.department | DDC-GE | |
cris.virtual.department | PH-SB | |
cris.virtual.parent-organization | ISIC | |
cris.virtual.parent-organization | SB | |
cris.virtual.parent-organization | EPFL | |
cris.virtual.sciperId | 136612 | |
cris.virtual.sciperId | 161283 | |
cris.virtual.sciperId | 122830 | |
cris.virtual.unitId | 10862 | |
cris.virtual.unitManager | Dyson, Paul Joseph | |
cris.virtual.unitManager | Cramer, Nicolai | |
cris.virtual.unitManager | Vigliotti, Franco | |
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datacite.rights | metadata-only | |
dc.contributor.author | Vigliotti, Franco | |
dc.contributor.author | Bonacina, Luigi | |
dc.contributor.author | Chergui, Majed | |
dc.date.accessioned | 2006-02-27T10:18:05 | |
dc.date.available | 2006-02-27T10:18:05 | |
dc.date.created | 2006-02-27 | |
dc.date.issued | 2002 | |
dc.date.modified | 2025-02-05T08:40:55.161345Z | |
dc.description.abstract | The ultrafast dynamics of electronic bubble formation upon excitation of the A(3ss) Rydberg state of NO trapped in solid H2 and D2 was studied by femtosecond pump-probe spectroscopy. The evolution of the spherical bubble is followed in real time by a probe pulse, which maps the transient configurations via transitions to higher-lying Rydberg states. Bubble formation is a 1-way process and no oscillations of the bubble are obsd. In addn., thermalization of the system occurs on the time scale of bubble formation. In the process, there is a net energy flow away from the excited center and 0.55-0.6 eV leave the 1st shell around the impurity. The authors directly ext. from the exptl. data the time dependence of the bubble radius, which the authors represent by a rising exponential with time consts. of 300 +- 50 fs in solid H2 and 410 +- 30 fs in solid D2 to reach a final radius of .apprx.5 .ANG.. This is confirmed by simulations of the transients. The different energy dissipation mechanisms in the expansion of the bubble are discussed and probably emission of a sound wave is the dominant one. [on SciFinder (R)] | |
dc.description.sponsorship | LSU | |
dc.identifier.doi | 10.1063/1.1449946 | |
dc.identifier.uri | ||
dc.relation.journal | The Journal of Chemical Physics | |
dc.title | Structural dynamics in quantum solids. II. Real-time probing of the electronic bubble formation in solid hydrogens | |
dc.type | text::journal::journal article::research article | |
dspace.entity.type | Publication | |
dspace.legacy.oai-identifier | oai:infoscience.tind.io:80569 | |
epfl.legacy.itemtype | Journal Articles | |
epfl.legacy.submissionform | ARTICLE | |
epfl.oai.currentset | SB | |
epfl.oai.currentset | OpenAIREv4 | |
epfl.oai.currentset | article | |
epfl.peerreviewed | REVIEWED | |
epfl.publication.version | ||
epfl.writtenAt | EPFL | |
oaire.citation.endPage | 4562 | |
oaire.citation.issue | 11 | |
oaire.citation.startPage | 4553 | |
oaire.citation.volume | 116 |
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