Publication | Closed Access
Dynamical (e, 2e) studies using tetrahydrofuran as a DNA analog
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Citations
41
References
2010
Year
Bioorganic ChemistryEngineeringDna AnalysisIncident Electron EnergyMolecular BiologyComputational ChemistryChemistryElectron PhysicDna NanotechnologyElectron SpectroscopyDna ComputingBiophysicsOuter Valence OrbitalEjected Electron EnergyPhysicsOligonucleotideDna ReplicationPhysical ChemistryDna AnalogQuantum ChemistryNatural SciencesSynthetic Biology
Triple differential cross sections for the electron-impact ionization of the outer valence orbital of tetrahydrofuran have been measured using the (e, 2e) technique. The measurements have been performed with coplanar asymmetric kinematics, at an incident electron energy of 250 eV and at an ejected electron energy of 10 eV, over a range of momentum transfers. The experimental results are compared with theoretical calculations carried out using the molecular three-body distorted wave model. The results obtained are important for gaining an understanding of electron driven processes at a molecular level and for modeling energy deposition in living tissue.
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