International audienceWe present a series of ab initio density functional based calculations of the fragmentation dynamics of core-ionized biomolecules. The computations are performed for pure liquid water, aqueous and isolated Uracil. Core ionization is described by replacing the 1s2 pseudopotential of one atom of the target molecule (C, N or O) with a pseudopotential for a 1s1 core-hole state. Our results predict that the dissociation of core-ionized water molecules may be reached during the lifetime of inner-shell vacancy (less than 10 fs), leading to OH bond breakage as a primary outcome. We also observe a second fragmentation channel in which total Coulomb explosion of the ionized water molecule occurs. Fragmentation pathways are found...
A combination of time-dependent density functional theory and Born-Oppenheimer molecular dynamics me...
It has been suggested that core ionization in DNA atoms could induce complex, irreparable damage. Sy...
We investigate pathways for fragmentation in the uracil radical cation using ab initio electronic st...
International audienceWe present a series of ab initio density functional based calculations of the ...
International audienceWe have studied the fragmentation of uracil in both gas phase and water enviro...
International audienceThe early stages of the Coulomb explosion of a doubly ionized water molecule i...
International audienceTheoretical simulations are particularly well suited to investigate, at a mole...
In this paper, we examine decay and fragmentation of core-excited and core-ionized water molecules c...
In this paper, we examine decay and fragmentation of core-excited and core-ionized water molecules c...
Abstract In this paper, we examine decay and fragmentation of core-excited and core-ionized water m...
A combination of time-dependent density functional theory and Born-Oppenheimer molecular dynamics me...
It has been suggested that core ionization in DNA atoms could induce complex, irreparable damage. Sy...
We investigate pathways for fragmentation in the uracil radical cation using ab initio electronic st...
International audienceWe present a series of ab initio density functional based calculations of the ...
International audienceWe have studied the fragmentation of uracil in both gas phase and water enviro...
International audienceThe early stages of the Coulomb explosion of a doubly ionized water molecule i...
International audienceTheoretical simulations are particularly well suited to investigate, at a mole...
In this paper, we examine decay and fragmentation of core-excited and core-ionized water molecules c...
In this paper, we examine decay and fragmentation of core-excited and core-ionized water molecules c...
Abstract In this paper, we examine decay and fragmentation of core-excited and core-ionized water m...
A combination of time-dependent density functional theory and Born-Oppenheimer molecular dynamics me...
It has been suggested that core ionization in DNA atoms could induce complex, irreparable damage. Sy...
We investigate pathways for fragmentation in the uracil radical cation using ab initio electronic st...