The interaction of low-energy scattering electrons/positrons with molecular targets characterized by a “supercritical” permanent dipole moment (≳2.0 D) presents special physical characteristics that affect their spatial distributions, around the nuclear network of the molecular partners, both above and below the energy thresholds. Such special states are described as either dipole scattering states (DSS) above thresholds or as dipole bound states (DBS) below thresholds. The details of their respective behaviour will be presented and discussed in this work in the case of the purinic DNA bases of adenine and guanine. The behavior of the additional electron, in particular, w...
When biological matter is subjected to ionizing radiation, a wealth of secondary low-energy (<20 eV)...
International audienceIn this Letter, we present Quantum Mechanics/Molecular Mechanics (QM/MM) calcu...
Abstract: The last decade has witnessed immense advances in our understanding of the effects of ioni...
Ab initio quantum calculations for low-energy positron scattering from gas-phase isolated ...
We report on results of computational studies of the interaction of slow electrons with the purine a...
We review recent theoretical work on low-energy electron collisions with the constituents of DNA and...
R-matrix calculations on electron collisions with the purine bases found in DNA and RNA (i.e., adeni...
The authors report results from computational studies of the interaction of low-energy electrons wit...
We have investigated the electron-attached states in Watson-Crick guanine-cytosine and adenine-thymi...
International audienceThe present communication addresses the question of the magnitude of dipolar c...
We report on results of recent studies of collisions of low-energy electrons with nucleobases and ot...
Injection of electrons into the empty π* molecular orbitals of uracil and the DNA bases creates shor...
We systematically examine all the tight-binding parameters pertinent to charge transfer along DNA. T...
Calculations are carried out to determine elastic scattering cross sections and resonance energies f...
The photoelectron properties of DNA and RNA bases are studied using many-body perturbation theory wi...
When biological matter is subjected to ionizing radiation, a wealth of secondary low-energy (<20 eV)...
International audienceIn this Letter, we present Quantum Mechanics/Molecular Mechanics (QM/MM) calcu...
Abstract: The last decade has witnessed immense advances in our understanding of the effects of ioni...
Ab initio quantum calculations for low-energy positron scattering from gas-phase isolated ...
We report on results of computational studies of the interaction of slow electrons with the purine a...
We review recent theoretical work on low-energy electron collisions with the constituents of DNA and...
R-matrix calculations on electron collisions with the purine bases found in DNA and RNA (i.e., adeni...
The authors report results from computational studies of the interaction of low-energy electrons wit...
We have investigated the electron-attached states in Watson-Crick guanine-cytosine and adenine-thymi...
International audienceThe present communication addresses the question of the magnitude of dipolar c...
We report on results of recent studies of collisions of low-energy electrons with nucleobases and ot...
Injection of electrons into the empty π* molecular orbitals of uracil and the DNA bases creates shor...
We systematically examine all the tight-binding parameters pertinent to charge transfer along DNA. T...
Calculations are carried out to determine elastic scattering cross sections and resonance energies f...
The photoelectron properties of DNA and RNA bases are studied using many-body perturbation theory wi...
When biological matter is subjected to ionizing radiation, a wealth of secondary low-energy (<20 eV)...
International audienceIn this Letter, we present Quantum Mechanics/Molecular Mechanics (QM/MM) calcu...
Abstract: The last decade has witnessed immense advances in our understanding of the effects of ioni...