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JAERI tandem-accelerator and tandem-booster

Abstract

In 1982, aiming at the new development of atomic energy research, the tandem accelerator of Japan Atomic Energy Research Institute (JAERI) was installed. In fiscal year 1993, the superconducting boosters which can increase the ion energy by up to 4 times were added, and the research in the region below 1000 MeV became possible. Those are electrostatic type accelerators which are easy to be used especially in basic research field, and are useful for future research. The tandem accelerator has been operated while maintaining the first class performance as the accelerator for various kinds of heavy ion beam. It has the special shape among electrostatic type accelerators, and is excellent in the easiness of control and stability. The main particulars of the tandem accelerator are shown. As for the ion sources of the tandem accelerator, three cesium sputter type ion sources are installed on two high voltage stands. The kinds of the ions which can be accelerated are mainly negative ions. As the improvement, electron cyclotron resonance (ECR) ion sources are expected to be adopted. As for the tandem boosters, the 1/4 wavelength type resonance hollow cylinder was adopted. The constitution of the tandem boosters is explained. The way of  More>>
Authors:
Yoshida, Tadashi [1] 
  1. Japan Atomic Energy Research Inst., Tokai, Ibaraki (Japan). Tokai Research Establishment
Publication Date:
Mar 01, 1998
Product Type:
Conference
Report Number:
JAERI-Conf-98-008; CONF-9707156-
Reference Number:
SCA: 430303; PA: JPN-98:007286; EDB-99:016585; SN: 98001997842
Resource Relation:
Conference: Workshop on gamma-ray spectroscopy utilizing heavy-ion, photon and RI beams, Tokai (Japan), 15-16 Jul 1997; Other Information: PBD: Mar 1998; Related Information: Is Part Of Proceeding of the workshop on gamma-ray spectroscopy utilizing heavy-ion, photon and RI beams; Oshima, Masumi; Sugita, Michiaki; Hayakawa, Takehito [eds.]; PB: 117 p.
Subject:
43 PARTICLE ACCELERATORS; JAERI TANDEM ACCELERATOR; JAERI LINAC; SUPERCONDUCTING CAVITY RESONATORS; ION BEAMS; SPECIFICATIONS
OSTI ID:
300399
Research Organizations:
Japan Atomic Energy Research Inst., Tokyo (Japan)
Country of Origin:
Japan
Language:
Japanese
Other Identifying Numbers:
Other: ON: DE98755723; TRN: JP9807286
Availability:
OSTI as DE98755723
Submitting Site:
JPN
Size:
pp. 7-11
Announcement Date:

Citation Formats

Yoshida, Tadashi. JAERI tandem-accelerator and tandem-booster. Japan: N. p., 1998. Web.
Yoshida, Tadashi. JAERI tandem-accelerator and tandem-booster. Japan.
Yoshida, Tadashi. 1998. "JAERI tandem-accelerator and tandem-booster." Japan.
@misc{etde_300399,
title = {JAERI tandem-accelerator and tandem-booster}
author = {Yoshida, Tadashi}
abstractNote = {In 1982, aiming at the new development of atomic energy research, the tandem accelerator of Japan Atomic Energy Research Institute (JAERI) was installed. In fiscal year 1993, the superconducting boosters which can increase the ion energy by up to 4 times were added, and the research in the region below 1000 MeV became possible. Those are electrostatic type accelerators which are easy to be used especially in basic research field, and are useful for future research. The tandem accelerator has been operated while maintaining the first class performance as the accelerator for various kinds of heavy ion beam. It has the special shape among electrostatic type accelerators, and is excellent in the easiness of control and stability. The main particulars of the tandem accelerator are shown. As for the ion sources of the tandem accelerator, three cesium sputter type ion sources are installed on two high voltage stands. The kinds of the ions which can be accelerated are mainly negative ions. As the improvement, electron cyclotron resonance (ECR) ion sources are expected to be adopted. As for the tandem boosters, the 1/4 wavelength type resonance hollow cylinder was adopted. The constitution of the tandem boosters is explained. The way of utilizing the tandem accelerator system and the aim for hereafter are reported. (K.I.)}
place = {Japan}
year = {1998}
month = {Mar}
}