AbstractThe SPES project, based on a variable energy high current proton cyclotron (35-70 MeV; 750μA), soon to be operational at LNL, foresees a neutron irradiation facility for Single Event Effects (SEE) studies on microelectronic components and systems. The proposed facility will comprise both a beam line with continuous energy atmospheric-like neutron production targets, and a Quasi Mono-energetic Neutron (QMN) beam line. A direct proton beam line is also foreseen. Here we describe the general features of the proposed QMN beam line. The quasi mono-energetic neutrons will be produced in various thin Be and Li targets and the spent proton beam will be magnetically deflected towards a beam dump. The layout of the facility with a multi-angle...
Accelerator-based neutron sources offer many advantages, in particular tunability of the neutron bea...
Quasi-monoenergetic neutron beams in the energy range from about 25 to 70 MeV have been produced and...
This article describes the new primary proton beamline 1U at TRIUMF. The purpose of this beamline is...
The SPES project, based on a variable energy high current proton cyclotron (35-70 MeV; 750 μA ), soo...
AbstractThe SPES project, based on a variable energy high current proton cyclotron (35-70 MeV; 750μA...
AbstractWe describe a proposed neutron irradiation facility for studyi ng neutron-i nduced Single Ev...
Abstract A high-current (500 μA) variable energy (35-70 MeV) proton cyclotron is under construction ...
AbstractA high-current (500 μA) variable energy (35-70 MeV) proton cyclotron is under construction a...
AbstractWe describe a proposed neutron irradiation facility for studyi ng neutron-i nduced Single Ev...
The availability at the INFN Legnaro National Laboratory of two new accelerator systems, the 70 MeV ...
The argument that well-characterised quasi-monoenergetic neutron (QMN) sources reaching into the ene...
The argument that well-characterised quasi-monoenergetic neutron (QMN) sources reaching into the ene...
NEPIR (Neutron and Proton Irradiation facility) is the project of a new irradiation facility at INFN...
The design of a fast-neutron (E > 1MeV) irradiation facility, devoted to investigating neutron-induc...
Within the European Partitioning & Transmutation research programs, infrastructures specifically ded...
Accelerator-based neutron sources offer many advantages, in particular tunability of the neutron bea...
Quasi-monoenergetic neutron beams in the energy range from about 25 to 70 MeV have been produced and...
This article describes the new primary proton beamline 1U at TRIUMF. The purpose of this beamline is...
The SPES project, based on a variable energy high current proton cyclotron (35-70 MeV; 750 μA ), soo...
AbstractThe SPES project, based on a variable energy high current proton cyclotron (35-70 MeV; 750μA...
AbstractWe describe a proposed neutron irradiation facility for studyi ng neutron-i nduced Single Ev...
Abstract A high-current (500 μA) variable energy (35-70 MeV) proton cyclotron is under construction ...
AbstractA high-current (500 μA) variable energy (35-70 MeV) proton cyclotron is under construction a...
AbstractWe describe a proposed neutron irradiation facility for studyi ng neutron-i nduced Single Ev...
The availability at the INFN Legnaro National Laboratory of two new accelerator systems, the 70 MeV ...
The argument that well-characterised quasi-monoenergetic neutron (QMN) sources reaching into the ene...
The argument that well-characterised quasi-monoenergetic neutron (QMN) sources reaching into the ene...
NEPIR (Neutron and Proton Irradiation facility) is the project of a new irradiation facility at INFN...
The design of a fast-neutron (E > 1MeV) irradiation facility, devoted to investigating neutron-induc...
Within the European Partitioning & Transmutation research programs, infrastructures specifically ded...
Accelerator-based neutron sources offer many advantages, in particular tunability of the neutron bea...
Quasi-monoenergetic neutron beams in the energy range from about 25 to 70 MeV have been produced and...
This article describes the new primary proton beamline 1U at TRIUMF. The purpose of this beamline is...