Abstract
Experiments on the production of multicharged ions are being carried out on the electron beam ion source {sup K}rion-C{sup .} The electron beam energy is within 10-80 keV and the current density is up to 300 A/cm{sup 2} and more. In addition to these factors for effective ionization, it is required to produce a potential distribution for ion retention along the electron beam axis (ion trap). The method of trap formation for any ionization time is described, and the experimental results are given. 5 refs.; 6 figs.
Citation Formats
Ovsyannikov, V P, and Shelaev, M I.
Control of an ion trap in the `Krion-C` ionizer; Upravlenie ionnoj lovushkoj ionizatora `Krion-S`.
USSR: N. p.,
1990.
Web.
Ovsyannikov, V P, & Shelaev, M I.
Control of an ion trap in the `Krion-C` ionizer; Upravlenie ionnoj lovushkoj ionizatora `Krion-S`.
USSR.
Ovsyannikov, V P, and Shelaev, M I.
1990.
"Control of an ion trap in the `Krion-C` ionizer; Upravlenie ionnoj lovushkoj ionizatora `Krion-S`."
USSR.
@misc{etde_10157159,
title = {Control of an ion trap in the `Krion-C` ionizer; Upravlenie ionnoj lovushkoj ionizatora `Krion-S`}
author = {Ovsyannikov, V P, and Shelaev, M I}
abstractNote = {Experiments on the production of multicharged ions are being carried out on the electron beam ion source {sup K}rion-C{sup .} The electron beam energy is within 10-80 keV and the current density is up to 300 A/cm{sup 2} and more. In addition to these factors for effective ionization, it is required to produce a potential distribution for ion retention along the electron beam axis (ion trap). The method of trap formation for any ionization time is described, and the experimental results are given. 5 refs.; 6 figs.}
place = {USSR}
year = {1990}
month = {Dec}
}
title = {Control of an ion trap in the `Krion-C` ionizer; Upravlenie ionnoj lovushkoj ionizatora `Krion-S`}
author = {Ovsyannikov, V P, and Shelaev, M I}
abstractNote = {Experiments on the production of multicharged ions are being carried out on the electron beam ion source {sup K}rion-C{sup .} The electron beam energy is within 10-80 keV and the current density is up to 300 A/cm{sup 2} and more. In addition to these factors for effective ionization, it is required to produce a potential distribution for ion retention along the electron beam axis (ion trap). The method of trap formation for any ionization time is described, and the experimental results are given. 5 refs.; 6 figs.}
place = {USSR}
year = {1990}
month = {Dec}
}