WANG CHAOJU;WU JIANHUA;YU LIHUA Institute of Atomic Energy, P. O. Box 275, Beijing. THE PROGRESS OF DEUTERIUM DUOPLASMATRON ION SOURCE[J]. Atomic Energy Science and Technology, 1987, 21(3): 340-340. DOI: 10.7538/yzk.1987.21.03.0340
Citation:
WANG CHAOJU;WU JIANHUA;YU LIHUA Institute of Atomic Energy, P. O. Box 275, Beijing. THE PROGRESS OF DEUTERIUM DUOPLASMATRON ION SOURCE[J]. Atomic Energy Science and Technology, 1987, 21(3): 340-340. DOI: 10.7538/yzk.1987.21.03.0340
WANG CHAOJU;WU JIANHUA;YU LIHUA Institute of Atomic Energy, P. O. Box 275, Beijing. THE PROGRESS OF DEUTERIUM DUOPLASMATRON ION SOURCE[J]. Atomic Energy Science and Technology, 1987, 21(3): 340-340. DOI: 10.7538/yzk.1987.21.03.0340
Citation:
WANG CHAOJU;WU JIANHUA;YU LIHUA Institute of Atomic Energy, P. O. Box 275, Beijing. THE PROGRESS OF DEUTERIUM DUOPLASMATRON ION SOURCE[J]. Atomic Energy Science and Technology, 1987, 21(3): 340-340. DOI: 10.7538/yzk.1987.21.03.0340
THE PROGRESS OF DEUTERIUM DUOPLASMATRON ION SOURCE
The mass spectra of the beam are measured and the construction of the ionsource has been improved. Total extracted beam current reaches 80mA. Bydeducting the contribution of H_2~+; we get I_D~+ =62.3mA, in which, I_(D_1~+) =32. 4mA,I_(D_2~+) =26.8mA and I_(D_3~+)=3.1mA. When larger are current (10A) is used. we obtainI~+~60mA and D_1~+ reaches 70%.