To benchmark a Monte Carlo model of the Auger cascade that has been developed at the Australian National University (ANU) against the literature data. The model is applicable to any Auger-electron emitting radionuclide with nuclear structure data in the format of the Evaluated Nuclear Structure Data File (ENSDF). Sch€onfeld’s algorithms and the BRICC code were incorporated to obtain initial vacancy distributions due to electron capture (EC) and internal conversion (IC), respectively. Atomic transition probabilities were adopted from the Evaluated Atomic Data Library (EADL) for elements with atomic number, Z¼1–100. Atomic transition energies were evaluated using a relativistic Dirac- Fock method. An energy-restriction protocol was imp...
Atomic relaxation is important in many diverse disciplines, from atomic and nuclear physics ...
International audienceThe Fortran subroutine package PENNUC, which simulates random decay pathways o...
To evaluate DNA damage of Auger emitters by numerical modelling at the molecular level.Energy emissi...
To benchmark a Monte Carlo model of the Auger cascade that has been developed at the AustralianNatio...
Understanding the strong radiotoxicity of DNA-incorporated Auger electron-emitting nuclides requires...
Auger-electron (AE) emitting radionuclides could be exploited for therapeutic purposes due to the hi...
Auger electrons emitted after nuclear decay have potential application in targeted cancer therapy. F...
Auger emitting radioisotopes are of great interest in targeted radiotherapy because, once internalis...
A localized source of electrons can be provided by radioisotopes that emit Auger electrons through a...
Auger-electron-emitting radioisotopes provide a unique tool that enables the targeted irradiation of...
Auger yields from the decays of 71Ge, 99mTc, 111In and 123-125I have been calculated using a Monte C...
Auger electrons emitted in nuclear decay offer a unique tool to treat cancer cells at the scale of a...
Auger electrons emitted in nuclear decay offer a unique tool to kill cancer cells at the scale of a ...
Copyright © 2012 B. Q. Lee et al. This is an open access article distributed under the Creative Comm...
Auger-emitting radionuclides have great potential in cancer treatment as low-energy Auger electrons ...
Atomic relaxation is important in many diverse disciplines, from atomic and nuclear physics ...
International audienceThe Fortran subroutine package PENNUC, which simulates random decay pathways o...
To evaluate DNA damage of Auger emitters by numerical modelling at the molecular level.Energy emissi...
To benchmark a Monte Carlo model of the Auger cascade that has been developed at the AustralianNatio...
Understanding the strong radiotoxicity of DNA-incorporated Auger electron-emitting nuclides requires...
Auger-electron (AE) emitting radionuclides could be exploited for therapeutic purposes due to the hi...
Auger electrons emitted after nuclear decay have potential application in targeted cancer therapy. F...
Auger emitting radioisotopes are of great interest in targeted radiotherapy because, once internalis...
A localized source of electrons can be provided by radioisotopes that emit Auger electrons through a...
Auger-electron-emitting radioisotopes provide a unique tool that enables the targeted irradiation of...
Auger yields from the decays of 71Ge, 99mTc, 111In and 123-125I have been calculated using a Monte C...
Auger electrons emitted in nuclear decay offer a unique tool to treat cancer cells at the scale of a...
Auger electrons emitted in nuclear decay offer a unique tool to kill cancer cells at the scale of a ...
Copyright © 2012 B. Q. Lee et al. This is an open access article distributed under the Creative Comm...
Auger-emitting radionuclides have great potential in cancer treatment as low-energy Auger electrons ...
Atomic relaxation is important in many diverse disciplines, from atomic and nuclear physics ...
International audienceThe Fortran subroutine package PENNUC, which simulates random decay pathways o...
To evaluate DNA damage of Auger emitters by numerical modelling at the molecular level.Energy emissi...