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Impedance and collective effects in the KEKB

Abstract

This paper focuses on beam instabilities due to single-beam collective effects, impedances from various beamline elements, ion trapping, photo-electrons, and other issues in the KEKB. We will also discuss the power deposition generated by a beam in the form of the Higher-Order-Mode (HOM) losses by interacting with its surroundings. (author)
Authors:
Chin, Yongho; [1]  Oide, Katsunobu
  1. National Lab. for High Energy Physics, Tsukuba, Ibaraki (Japan)
Publication Date:
Aug 01, 1996
Product Type:
Conference
Report Number:
KEK-PROC-96-6; CONF-9506279-
Reference Number:
SCA: 430400; PA: JPN-97:003150; EDB-97:062603; SN: 97001772723
Resource Relation:
Conference: CEIBA95: international workshop on collective effects and impedance for B-factories, Tsukuba (Japan), 12-17 Jun 1995; Other Information: PBD: Aug 1996; Related Information: Is Part Of Proceedings of the international workshop on collective effects and impedance for B-factories (CEIBA95); Chin, Yongho [ed.]; PB: 531 p.
Subject:
43 PARTICLE ACCELERATORS; BEAM DYNAMICS; TRISTAN STORAGE RINGS; B MESONS; COLLIDING BEAMS; ELECTRON BEAMS; POSITRON BEAMS; INSTABILITY; ELECTRIC IMPEDANCE; TRAPPING; IONS; PHOTOELECTRIC EFFECT; ELECTROMAGNETIC FIELDS
OSTI ID:
461160
Research Organizations:
National Lab. for High Energy Physics, Tsukuba, Ibaraki (Japan)
Country of Origin:
Japan
Language:
English
Other Identifying Numbers:
Other: ON: DE97729548; TRN: JP9703150
Availability:
OSTI as DE97729548
Submitting Site:
JPN
Size:
pp. 1-22
Announcement Date:
May 05, 1997

Citation Formats

Chin, Yongho, and Oide, Katsunobu. Impedance and collective effects in the KEKB. Japan: N. p., 1996. Web.
Chin, Yongho, & Oide, Katsunobu. Impedance and collective effects in the KEKB. Japan.
Chin, Yongho, and Oide, Katsunobu. 1996. "Impedance and collective effects in the KEKB." Japan.
@misc{etde_461160,
title = {Impedance and collective effects in the KEKB}
author = {Chin, Yongho, and Oide, Katsunobu}
abstractNote = {This paper focuses on beam instabilities due to single-beam collective effects, impedances from various beamline elements, ion trapping, photo-electrons, and other issues in the KEKB. We will also discuss the power deposition generated by a beam in the form of the Higher-Order-Mode (HOM) losses by interacting with its surroundings. (author)}
place = {Japan}
year = {1996}
month = {Aug}
}