Abstract
In an experiment by using the gas mixing technique and electron beam injection technique at a multiply-charged heavy ion source (HyperECR) with 14.25 GHz microwave frequency, an enhancement of the intensity for highly charged ions has been observed. It was confirmed that these methods work well also in this source. (author).
Citation Formats
Yamashita, Y, Isoya, Y, Ishida, T, and Sekiguchi, M.
Effects of gas mixing and electron injection in production of multiply-charged ion with the HyperECR.
Japan: N. p.,
1993.
Web.
Yamashita, Y, Isoya, Y, Ishida, T, & Sekiguchi, M.
Effects of gas mixing and electron injection in production of multiply-charged ion with the HyperECR.
Japan.
Yamashita, Y, Isoya, Y, Ishida, T, and Sekiguchi, M.
1993.
"Effects of gas mixing and electron injection in production of multiply-charged ion with the HyperECR."
Japan.
@misc{etde_10131545,
title = {Effects of gas mixing and electron injection in production of multiply-charged ion with the HyperECR}
author = {Yamashita, Y, Isoya, Y, Ishida, T, and Sekiguchi, M}
abstractNote = {In an experiment by using the gas mixing technique and electron beam injection technique at a multiply-charged heavy ion source (HyperECR) with 14.25 GHz microwave frequency, an enhancement of the intensity for highly charged ions has been observed. It was confirmed that these methods work well also in this source. (author).}
place = {Japan}
year = {1993}
month = {Jul}
}
title = {Effects of gas mixing and electron injection in production of multiply-charged ion with the HyperECR}
author = {Yamashita, Y, Isoya, Y, Ishida, T, and Sekiguchi, M}
abstractNote = {In an experiment by using the gas mixing technique and electron beam injection technique at a multiply-charged heavy ion source (HyperECR) with 14.25 GHz microwave frequency, an enhancement of the intensity for highly charged ions has been observed. It was confirmed that these methods work well also in this source. (author).}
place = {Japan}
year = {1993}
month = {Jul}
}