Two types of noninterceptive optical monitors, based on gas fluorescence, have been designed for use on the Linear IFMIF Prototype Accelerator (LIPAc) that is currently under development (a 125 mA, 9 MeV, 175 MHz continuous wave deuteron beam). These diagnostics offer a technique to characterize the transverse beam profile for medium to high current hadron beams, without intercepting the beam core. This paper reports on beam tests using the prototype monitors developed for LIPAc. Tests were carried out at an experimental line of the Centro Nacional de Aceleradores cyclotron, using 9 MeV deuterons with beam currents from 0.4 to 40 μA. In addition, transverse beam profile measurements were performed under high background radiation (e.g. gamm...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...
International audienceThe LIPAc accelerator will be a linear CW deuteron accelerator capable of deli...
International audienceThe LIPAc accelerator will be a linear CW deuteron accelerator capable of deli...
In the framework of the IFMIF-EVEDA project, a high deuteron beam intensity (125 mA- 9 MeV) prototyp...
The IFMIF accelerator will accelerate two 125mA continuous wave (cw) deuteron beams up to 40MeV and ...
Today particle accelerators have become key instruments in different areas, from materials science t...
The precise determination of transverse beam profiles at high current hadron accelerators has to be ...
International audienceTo prove the feasibility of the IFMIF accelerators concept, the EVEDA phase wi...
International audienceTo prove the feasibility of the IFMIF accelerators concept, the EVEDA phase wi...
Supersonic gas jets have been used in transverse beam profile monitoring as Ionization Profile Monit...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
A minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...
International audienceThe LIPAc accelerator will be a linear CW deuteron accelerator capable of deli...
International audienceThe LIPAc accelerator will be a linear CW deuteron accelerator capable of deli...
In the framework of the IFMIF-EVEDA project, a high deuteron beam intensity (125 mA- 9 MeV) prototyp...
The IFMIF accelerator will accelerate two 125mA continuous wave (cw) deuteron beams up to 40MeV and ...
Today particle accelerators have become key instruments in different areas, from materials science t...
The precise determination of transverse beam profiles at high current hadron accelerators has to be ...
International audienceTo prove the feasibility of the IFMIF accelerators concept, the EVEDA phase wi...
International audienceTo prove the feasibility of the IFMIF accelerators concept, the EVEDA phase wi...
Supersonic gas jets have been used in transverse beam profile monitoring as Ionization Profile Monit...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
A minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
International audienceIFMIF (International Fusion Materials Irradiation Fa-cility) is an accelerator...
<span style="color: rgb(51, 51, 51); font-family: arial, helvetica, sans-serif; font-size: 13px; lin...