The AECL study for an intense neutron generator: (technical details) |
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Contents
RESEARCH AND TECHNICAL APPLICATIONS V 1 | v |
Pions and Muons J CD Milton E P Hincks R L | 42 |
B NUCLEAR POWER TECHNOLOGY | 50 |
10 other sections not shown
Common terms and phrases
activity amplifier Amplitron atoms beam current beam dump beam splitter beam tube beryllium calculations circuit components cooling cost cross-section Cyclotron deflection diameter distribution effect efficiency electric electron emittance excited experimental experiments fast neutrons fission frequency gradient heat high energy increase injector input intensity interaction irradiation isotopes klystron length linac linear accelerator load loop machine magnetic field material maximum measurements meson moderator tank modes multipactoring muon neutron capture neutron flux nuclear nuclei nucleons operation orbit output parameters particle Pb-Bi phase Phys pions pole tip possible power supply problems proc produced proton beam pulse pump quadrupole radiation reactions reactor reduced reference design resonance RF power scattering sector shielding spallation stage steel structure Table target tube temperature thermal neutron thermal neutron facility thick tunnel vacuum voltage width y-ray yoke Zirconium