The neutron yield of a compact accelerator driven neutron source depends strongly on the target performance. This performance is influenced by the target composition and geometry, the cooling system design and which primary particles are used. We show that the temperature difference inside the target depends directly on the target thickness determined by the ion stopping range and therefore on the type and energy of the primary particle. Deuterons with a larger stopping power show a smaller temperature difference inside the target than protons allowing thus for a better target cooling
A multidisciplinary scientific research center harnessing the world’s most powerful neutron source i...
AbstractA simple and easy-to-use compact neutron source based on a low power level proton accelerato...
The effect of a particle beam's impact angle on the temperature in an irradiated target is still an ...
In recent years, the interest in compact, accelerator-driven neutron sources (CANS) has increased wo...
The tritiated targets to be installed on a compact accelerator being developed in the laboratory hav...
The neutron yield for compact accelerator driven neutron sources depends on the target material, the...
The High Brilliance neutron Source (HBS) project aims to develop a high-current accelerator-driven n...
With the decommissioning of research reactors in Europe and elsewhere in recent years, theavailable ...
The width of the energy distribution of fusion-produced neutrons is often used as an indication of t...
International audienceRecently, the possibility to use compact accelerators coupled to high current ...
A neutron generator is considered in which a beam of tritons is incident on a hypothetical cold deut...
Laser-driven d(d, n)-He-3 beam-target fusion neutron production from bulk deuterated plastic (CD) ta...
The NUMEN experiment aims to study Double Charge Exchange nuclear reactions at low energy as complem...
An accelerator-based boron neutron capture therapy (BNCT) system that employs a solid-state Li targe...
A feasibility study of a compact high power density target for a spallation neutron source was under...
A multidisciplinary scientific research center harnessing the world’s most powerful neutron source i...
AbstractA simple and easy-to-use compact neutron source based on a low power level proton accelerato...
The effect of a particle beam's impact angle on the temperature in an irradiated target is still an ...
In recent years, the interest in compact, accelerator-driven neutron sources (CANS) has increased wo...
The tritiated targets to be installed on a compact accelerator being developed in the laboratory hav...
The neutron yield for compact accelerator driven neutron sources depends on the target material, the...
The High Brilliance neutron Source (HBS) project aims to develop a high-current accelerator-driven n...
With the decommissioning of research reactors in Europe and elsewhere in recent years, theavailable ...
The width of the energy distribution of fusion-produced neutrons is often used as an indication of t...
International audienceRecently, the possibility to use compact accelerators coupled to high current ...
A neutron generator is considered in which a beam of tritons is incident on a hypothetical cold deut...
Laser-driven d(d, n)-He-3 beam-target fusion neutron production from bulk deuterated plastic (CD) ta...
The NUMEN experiment aims to study Double Charge Exchange nuclear reactions at low energy as complem...
An accelerator-based boron neutron capture therapy (BNCT) system that employs a solid-state Li targe...
A feasibility study of a compact high power density target for a spallation neutron source was under...
A multidisciplinary scientific research center harnessing the world’s most powerful neutron source i...
AbstractA simple and easy-to-use compact neutron source based on a low power level proton accelerato...
The effect of a particle beam's impact angle on the temperature in an irradiated target is still an ...