Positron Annihilation Lifetime Spectroscopy can be used to characterize radia- tion-induced material defects to subsequently optimize nuclear materials with respect to radiation damage. Nuclear Systems of the future such as Generation IV and fusion concepts demand high performance from structural materials, comprising a material\u27s stability in highly-radiative and hot environments. Analyzing experimental data obtained with the Chalmers Pulsed Positron Beam can help to design material compositions that are able to perform safely under such such conditions.The following work summarizes the efforts made to understand necessary basics of the measurement technique and to validate simulation tools for estimating positron behavior in solid medi...
The central task of positron lifetime spectroscopy is that of determining defect types and concentra...
With the aim of extending positron-lifetime measurements to high temperature and avoiding surface an...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
Positron annihilation spectroscopy (PAS) is widely recognized as a powerful characterization techniq...
New materials for advanced fission/fusion nuclear facilities must inevitably demonstrate resistance ...
Positron lifetime measurements are used as a tool for obtaining a deeper understanding of positron b...
In this work, positron annihilation spectroscopy was used in studying lattice point defects in some ...
In the present article, a positron annihilation lifetime technique was used for the study of VVER-44...
Steels used in nuclear industry have been experimentally studied by positron annihilation spectrosco...
Abstract: Positron Annihilation Spectroscopy is a valuable microscopic method to study radiation dam...
The application of positron annihilation spectroscopy for the studies of defects produced by differe...
The hazard originating from the use of nuclear materials in various areas of the society necessitate...
The positron annihilation method is a new addition to the range of sensitive complementary nuclear t...
Positron lifetime measurements are made with the Chalmers Pulsed Positron Beam with the aim to inves...
Positron annihilation lifetime spectroscopy (PALS) can provide sensitive detection and identificatio...
The central task of positron lifetime spectroscopy is that of determining defect types and concentra...
With the aim of extending positron-lifetime measurements to high temperature and avoiding surface an...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
Positron annihilation spectroscopy (PAS) is widely recognized as a powerful characterization techniq...
New materials for advanced fission/fusion nuclear facilities must inevitably demonstrate resistance ...
Positron lifetime measurements are used as a tool for obtaining a deeper understanding of positron b...
In this work, positron annihilation spectroscopy was used in studying lattice point defects in some ...
In the present article, a positron annihilation lifetime technique was used for the study of VVER-44...
Steels used in nuclear industry have been experimentally studied by positron annihilation spectrosco...
Abstract: Positron Annihilation Spectroscopy is a valuable microscopic method to study radiation dam...
The application of positron annihilation spectroscopy for the studies of defects produced by differe...
The hazard originating from the use of nuclear materials in various areas of the society necessitate...
The positron annihilation method is a new addition to the range of sensitive complementary nuclear t...
Positron lifetime measurements are made with the Chalmers Pulsed Positron Beam with the aim to inves...
Positron annihilation lifetime spectroscopy (PALS) can provide sensitive detection and identificatio...
The central task of positron lifetime spectroscopy is that of determining defect types and concentra...
With the aim of extending positron-lifetime measurements to high temperature and avoiding surface an...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...