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Autor:
A. Fioretti, Donatella Ciampini, M. Viteau, M. Allegrini, I. Guerri, Francesco Tantussi, Francesco Fuso, Gholamreza Shayeganrad
Publikováno v:
Physical Review Applied 5 (2016): 054020–054020. doi:10.1103/PhysRevApplied.5.054020
info:cnr-pdr/source/autori:Shayeganrad, G.; Fioretti, A.; Guerri, I.; Tantussi, F.; Ciampini, D.; Allegrini, M.; Viteau, M.; Fuso, F./titolo:Low-Energy Ions from Laser-Cooled Atoms/doi:10.1103%2FPhysRevApplied.5.054020/rivista:Physical Review Applied/anno:2016/pagina_da:054020/pagina_a:054020/intervallo_pagine:054020–054020/volume:5
info:cnr-pdr/source/autori:Shayeganrad, G.; Fioretti, A.; Guerri, I.; Tantussi, F.; Ciampini, D.; Allegrini, M.; Viteau, M.; Fuso, F./titolo:Low-Energy Ions from Laser-Cooled Atoms/doi:10.1103%2FPhysRevApplied.5.054020/rivista:Physical Review Applied/anno:2016/pagina_da:054020/pagina_a:054020/intervallo_pagine:054020–054020/volume:5
We report the features of an ion source based on two-color photoionization of a laser-cooled cesium beam outsourced from a pyramidal magneto-optical trap. The ion source operates in continuous or pulsed mode. At acceleration voltages below 300 V, it