Absolute double differential cross sections (DDCS) have been measured for the ionization of gas-phase uracil (C4H4N2O2) by 0.5, 1.0, and 2.0 MeV proton impacts. Measurements were performed by secondary electron spectroscopy using a 45◦ parallel plate electrostatic spectrometer over an energy range of 1.0-1000 eV at emission angles from 15◦ to 165◦. Theoretical calculation of ionization cross sections has also been carried out by using the first-order Born approximation with correct boundary conditions. Single differential and total ionization cross sections deduced from DDCS revealed fairly good agreement between experimental and theoretical values at all the emission angles investigated
<p><strong>Figure 3.</strong> Typical ToF spectrum of uracil.</p> <p><strong>Abstract</strong></p> <...
Double-differential ionization cross sections (DDCS) for bare-carbon-ion-induced ionization of vapor...
Besides fundamental interest in the study of ion-molecule collision aspects, the investigation of bi...
Absolute double differential cross sections (DDCS) have been measured for the ionization of gas-phas...
<p><strong>Figure A1.</strong> DDCS spectrum of (a) uracil and (b) O<sub>2</sub> in collisions with ...
Ionization and fragmentation of uracil molecules (C4H4N2O2, m = 112 amu) in collisions with fast hig...
We report the energy and angular distribution of the electron emission from an RNA base molecule ura...
Fragmentation ratios and branching ratios are measured for ionization and dissociative ionization fo...
We study the atomic collisions with large molecules and simple atoms. The ionization and f...
<p><strong>Figure 2.</strong> Plot of uracil deposition rate versus time.</p> <p><strong>Abstract</s...
Fragmentation of uracil in the gas phase has been studied using low-energy electron impact. Positive...
We report the energy and angular distribution of the electron emission from an RNA base molecule ura...
The aim of this experiment is to study low energy electron impact induced ionization and fragmentati...
<p><strong>Figure 7.</strong> Partial cross sections of fragments of uracil in collisions with (a) C...
submitted to Phys. Rev. AFragmentation ratios have been measured for ionization and dissociative ion...
<p><strong>Figure 3.</strong> Typical ToF spectrum of uracil.</p> <p><strong>Abstract</strong></p> <...
Double-differential ionization cross sections (DDCS) for bare-carbon-ion-induced ionization of vapor...
Besides fundamental interest in the study of ion-molecule collision aspects, the investigation of bi...
Absolute double differential cross sections (DDCS) have been measured for the ionization of gas-phas...
<p><strong>Figure A1.</strong> DDCS spectrum of (a) uracil and (b) O<sub>2</sub> in collisions with ...
Ionization and fragmentation of uracil molecules (C4H4N2O2, m = 112 amu) in collisions with fast hig...
We report the energy and angular distribution of the electron emission from an RNA base molecule ura...
Fragmentation ratios and branching ratios are measured for ionization and dissociative ionization fo...
We study the atomic collisions with large molecules and simple atoms. The ionization and f...
<p><strong>Figure 2.</strong> Plot of uracil deposition rate versus time.</p> <p><strong>Abstract</s...
Fragmentation of uracil in the gas phase has been studied using low-energy electron impact. Positive...
We report the energy and angular distribution of the electron emission from an RNA base molecule ura...
The aim of this experiment is to study low energy electron impact induced ionization and fragmentati...
<p><strong>Figure 7.</strong> Partial cross sections of fragments of uracil in collisions with (a) C...
submitted to Phys. Rev. AFragmentation ratios have been measured for ionization and dissociative ion...
<p><strong>Figure 3.</strong> Typical ToF spectrum of uracil.</p> <p><strong>Abstract</strong></p> <...
Double-differential ionization cross sections (DDCS) for bare-carbon-ion-induced ionization of vapor...
Besides fundamental interest in the study of ion-molecule collision aspects, the investigation of bi...