Radiation generated by the ultrafast migration of a positive charge following the ionization of a molecular system
Electronic many-body effects alone can be the driving force for an ultrafast migration of a positive charge created upon ionization of molecular systems. Here we show that this purely electronic phenomenon generates a characteristic IR radiation. The situation when the initial ionic wave packet is p...
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Published in | Physical review letters Vol. 106; no. 5; p. 053001 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
United States
31.01.2011
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Abstract | Electronic many-body effects alone can be the driving force for an ultrafast migration of a positive charge created upon ionization of molecular systems. Here we show that this purely electronic phenomenon generates a characteristic IR radiation. The situation when the initial ionic wave packet is produced by a sudden removal of an electron is also studied. It is shown that in this case a much stronger UV emission is generated. This emission appears as an ultrafast response of the remaining electrons to the perturbation caused by the sudden ionization and as such is a universal phenomenon to be expected in every multielectron system. |
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AbstractList | Electronic many-body effects alone can be the driving force for an ultrafast migration of a positive charge created upon ionization of molecular systems. Here we show that this purely electronic phenomenon generates a characteristic IR radiation. The situation when the initial ionic wave packet is produced by a sudden removal of an electron is also studied. It is shown that in this case a much stronger UV emission is generated. This emission appears as an ultrafast response of the remaining electrons to the perturbation caused by the sudden ionization and as such is a universal phenomenon to be expected in every multielectron system. |
Author | Kuleff, Alexander I Cederbaum, Lorenz S |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/21405391$$D View this record in MEDLINE/PubMed |
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