The necessity of a neutron source for fusion materials research was identified already in the 70s. Though neutrons induced degradation present similarities on a mechanistic approach, thresholds energies for crucial transmutations are typically above fission neutrons spectrum. The generation of He via 56Fe (n,α) 53Cr in future fusion reactors with around 12 appm/dpa will lead to swelling and structural materials embrittlement. Existing neutron sources, namely fission reactors or spallation sources lead to different degradation, attempts for extrapolation are unsuccessful given the absence of experimental observations in the operational ranges of a fusion reactor. Neutrons with a broad peak at 14MeV can be generated with Li(d,xn) reactions; t...
IFMIF, the International Fusion Materials Irradiation Facility, is presently in its engineering vali...
We report the validation results of liquid lithium target stability for an intense fusion neutron so...
Advances in high-current linear-accelerator technology since the design of the Fusion Materials Irra...
AbstractThe necessity of a neutron source for fusion materials research was identified already in th...
The necessity of a neutron source for fusion materials research was identified already in the 70s. T...
Environmental acceptability, safety, and economic viability win ultimately be the keys to the widesp...
The International Fusion Materials Irradiation Facility (IFMIF), presently in its Engineering Valida...
The International Fusion Materials Irradiation Facility (IFMIF), presently in its Engineering Valida...
The International Fusion Materials Irradiation Facility (IFMIF) is an accelerator-driven intense neu...
International audienceIFMIF-DONES is a powerful neutron irradiation facility for the study and quali...
A-FNS and IFMIF-DONES neutron source program in Japan and in the EU, respectively, are advancing tar...
The report describes the new results of the development work performed at Forschungszentrum Karlsruh...
Advances in high-current linear-accelerator technology since the design of the Fusion Materials Irra...
LIPAc is the Linear IFMIF Prototype Accelerator developed within the framework of the IFMIF project ...
IFMIF, the International Fusion Materials Irradiation Facility, is an accelerator-based neutron sour...
IFMIF, the International Fusion Materials Irradiation Facility, is presently in its engineering vali...
We report the validation results of liquid lithium target stability for an intense fusion neutron so...
Advances in high-current linear-accelerator technology since the design of the Fusion Materials Irra...
AbstractThe necessity of a neutron source for fusion materials research was identified already in th...
The necessity of a neutron source for fusion materials research was identified already in the 70s. T...
Environmental acceptability, safety, and economic viability win ultimately be the keys to the widesp...
The International Fusion Materials Irradiation Facility (IFMIF), presently in its Engineering Valida...
The International Fusion Materials Irradiation Facility (IFMIF), presently in its Engineering Valida...
The International Fusion Materials Irradiation Facility (IFMIF) is an accelerator-driven intense neu...
International audienceIFMIF-DONES is a powerful neutron irradiation facility for the study and quali...
A-FNS and IFMIF-DONES neutron source program in Japan and in the EU, respectively, are advancing tar...
The report describes the new results of the development work performed at Forschungszentrum Karlsruh...
Advances in high-current linear-accelerator technology since the design of the Fusion Materials Irra...
LIPAc is the Linear IFMIF Prototype Accelerator developed within the framework of the IFMIF project ...
IFMIF, the International Fusion Materials Irradiation Facility, is an accelerator-based neutron sour...
IFMIF, the International Fusion Materials Irradiation Facility, is presently in its engineering vali...
We report the validation results of liquid lithium target stability for an intense fusion neutron so...
Advances in high-current linear-accelerator technology since the design of the Fusion Materials Irra...