TechnoFusión: Difference between revisions

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== Material Irradiation ==
== Material Irradiation ==
Of course, exact reactor conditions are only reproduced inside an actual reactor. Even so, it is possible to simulate the effects of neutrons and gamma radiation on materials by irradiating with ions and electrons. The effect of neutron radiation will be simulated by combining three ion accelerators: one light ion accelerator of the tandem type for irradiating with He, with an energy of 6 MV, one light ion accelerator of the tandem type for irradiating with H (or D), with an energy of 5-6 MV, and a heavy ion accelerator of the cyclotron type, with k = 110, to implant heavy ions (Fe, W, Si, C) or high energy protons. In addition, a high field magnet (5-10 T) will be used to study the simultaneous effect of irradiation and magnetic fields on materials. The effect of ionizing gamma radiation will be simulated by an electron accelerator of the Rhodotron type with a fixed energy of 10 MeV, which will be shared with other areas of the Centre.  
Even though the exact reactor conditions are only reproduced inside a reactor, it is possible to simulate the effects of neutrons and gamma radiation on materials by irradiating by ion and electron accelerators.  
The effect of neutronic radiation will be characterized by combining three ion accelerators: one light ion accelerator of the tandem type for irradiating with He, with an energy of 6 MV, one light ion accelerator of the tandem type for irradiating with H (or D), with an energy of 5-6 MV, and a heavy ion accelerator of the cyclotron type, with k = 110, to implant heavy ions (Fe, W, Si, C) or high energy protons.  
Additionally, a high magnetic field, between 5 and 10 T, must be incorporated into this facility in order to study the simultaneous effect of radiation and magnetic fields on materials.
The effects of ionizing gamma radiation will be studied using a Rhodotron® electron accelerator with a fixed energy of 10 MeV that will be shared with other TechnoFusión areas.


== Plasma Wall Interaction ==
== Plasma Wall Interaction ==
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