The irradiation of biological systems by energetic ion beams has multiple applications in medical physics and space radiation health, such as hadrontherapy for cancer treatment or protection of astronauts against space radiation. Therefore, for a better control and understanding of the effects of radiation damage in living tissues, it is necessary to advance an accurate description of the energy loss from the ion beam to the target. In the present work we use the dielectric formalism to calculate the probability for an energetic proton to produce electronic excitations in two targets of high biological interest, namely, liquid water and DNA. Also, the mean energy of the electronic excitations in these targets is found as a function of the i...
We have performed detailed simulations of the energy spectra, recorded at several angles, of proton ...
The number and energy of secondary electrons generated around the trajectories of swift protons inte...
Proton beam therapy allows irradiating tumor volumes with reduced side effects on normal tissues wit...
We have calculated the electronic energy loss of proton and a-particle beams in dry DNA using the di...
The Partial Stopping Power Effective Charge (PSPEC) ζ(q), the mean excitation energy I(eV), have bee...
We study the energy deposited by swift proton beams on materials of biological interest, such as liq...
A short review of the dielectric approach used to describe the energy deposited in liquid water by s...
The energy delivered by a swift proton beam in materials of interest to hadron therapy (liquid water...
Paper submitted to the 9th International Conference on Applications of Nuclear Techniques, Crete, Gr...
Molecular behaviour of liquid water under proton irradiation is of great importance to a number of t...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
Electronic excitations and ionisations produced by electron impact are key processes in the radiatio...
We present an analytical model to evaluate in a fast, simple and effective manner the energy deliver...
Water is a common surrogate of DNA for modelling the charged particle-induced ionizing processes in ...
We have evaluated the spatial distribution of energy deposition by proton beams in liquid water usin...
We have performed detailed simulations of the energy spectra, recorded at several angles, of proton ...
The number and energy of secondary electrons generated around the trajectories of swift protons inte...
Proton beam therapy allows irradiating tumor volumes with reduced side effects on normal tissues wit...
We have calculated the electronic energy loss of proton and a-particle beams in dry DNA using the di...
The Partial Stopping Power Effective Charge (PSPEC) ζ(q), the mean excitation energy I(eV), have bee...
We study the energy deposited by swift proton beams on materials of biological interest, such as liq...
A short review of the dielectric approach used to describe the energy deposited in liquid water by s...
The energy delivered by a swift proton beam in materials of interest to hadron therapy (liquid water...
Paper submitted to the 9th International Conference on Applications of Nuclear Techniques, Crete, Gr...
Molecular behaviour of liquid water under proton irradiation is of great importance to a number of t...
The effective use of swift ion beams in cancer treatment (known as hadrontherapy) as well as appropr...
Electronic excitations and ionisations produced by electron impact are key processes in the radiatio...
We present an analytical model to evaluate in a fast, simple and effective manner the energy deliver...
Water is a common surrogate of DNA for modelling the charged particle-induced ionizing processes in ...
We have evaluated the spatial distribution of energy deposition by proton beams in liquid water usin...
We have performed detailed simulations of the energy spectra, recorded at several angles, of proton ...
The number and energy of secondary electrons generated around the trajectories of swift protons inte...
Proton beam therapy allows irradiating tumor volumes with reduced side effects on normal tissues wit...