Abstract
KEKB is an asymmetric electron-positron collider at 8 x 3.5 GeV which aims at providing electron-positron collision at the center of mass energy of 10.58 GeV. Its mission is to support high energy physics research programs on CP violation and other topics in B-meson decay. Its luminosity goal is 10{sup 34}/cm{sup 2}s. As the construction of the KEKB was approved as a five-year project by the Japanese government, it was begun formally in April, 1994. The low energy ring LER for positrons at 3.5 GeV and the high energy ring HER for electrons at 8 GeV will be built side by side in the existing TRISTAN tunnel with 3 km circumference, and the maximum use of the infrastructure of TRISTAN will be made. The KEKB has only one interaction point in the Tsukuba experimental hall, and the BELLE detector will be installed in this interaction region. The layout of the two rings is explained. In this report, the basic design, hardware systems, the construction schedule, physics requirement, machine parameters, beam-beam interaction, RF parameters, impedance and collective effects, lattice design, interaction region, RF system, magnet system, vacuum system, beam instrumentation, injection and accelerator control system are described. (K.I.).
Citation Formats
None.
KEKB B-factory design report.
Japan: N. p.,
1995.
Web.
None.
KEKB B-factory design report.
Japan.
None.
1995.
"KEKB B-factory design report."
Japan.
@misc{etde_225814,
title = {KEKB B-factory design report}
author = {None}
abstractNote = {KEKB is an asymmetric electron-positron collider at 8 x 3.5 GeV which aims at providing electron-positron collision at the center of mass energy of 10.58 GeV. Its mission is to support high energy physics research programs on CP violation and other topics in B-meson decay. Its luminosity goal is 10{sup 34}/cm{sup 2}s. As the construction of the KEKB was approved as a five-year project by the Japanese government, it was begun formally in April, 1994. The low energy ring LER for positrons at 3.5 GeV and the high energy ring HER for electrons at 8 GeV will be built side by side in the existing TRISTAN tunnel with 3 km circumference, and the maximum use of the infrastructure of TRISTAN will be made. The KEKB has only one interaction point in the Tsukuba experimental hall, and the BELLE detector will be installed in this interaction region. The layout of the two rings is explained. In this report, the basic design, hardware systems, the construction schedule, physics requirement, machine parameters, beam-beam interaction, RF parameters, impedance and collective effects, lattice design, interaction region, RF system, magnet system, vacuum system, beam instrumentation, injection and accelerator control system are described. (K.I.).}
place = {Japan}
year = {1995}
month = {Aug}
}
title = {KEKB B-factory design report}
author = {None}
abstractNote = {KEKB is an asymmetric electron-positron collider at 8 x 3.5 GeV which aims at providing electron-positron collision at the center of mass energy of 10.58 GeV. Its mission is to support high energy physics research programs on CP violation and other topics in B-meson decay. Its luminosity goal is 10{sup 34}/cm{sup 2}s. As the construction of the KEKB was approved as a five-year project by the Japanese government, it was begun formally in April, 1994. The low energy ring LER for positrons at 3.5 GeV and the high energy ring HER for electrons at 8 GeV will be built side by side in the existing TRISTAN tunnel with 3 km circumference, and the maximum use of the infrastructure of TRISTAN will be made. The KEKB has only one interaction point in the Tsukuba experimental hall, and the BELLE detector will be installed in this interaction region. The layout of the two rings is explained. In this report, the basic design, hardware systems, the construction schedule, physics requirement, machine parameters, beam-beam interaction, RF parameters, impedance and collective effects, lattice design, interaction region, RF system, magnet system, vacuum system, beam instrumentation, injection and accelerator control system are described. (K.I.).}
place = {Japan}
year = {1995}
month = {Aug}
}