APF IH-DTL Design for the Muon LINAC in the J-PARC Muon g-2/EDM Experiment
M. Otani, Kazuo Hasegawa, Noriyosu Hayashizaki, Yoshihisa Iwashita, Y. Iwata, R. Kitamura, Yasuhiro Kondo, T. Mibe, Naohito Saito, Mitsuhiro Yoshida
Abstract
M. Otani, Kazuo Hasegawa, Noriyosu Hayashizaki, Yoshihisa Iwashita, Y. Iwata, R. Kitamura, Yasuhiro Kondo, T. Mibe, Naohito Saito, Mitsuhiro Yoshida
Abstract
The muon linac for the J-PARC muon g-2/EDM experiment consists of RFQ (324 MHz), IH-DTL (324 MHz), DAW coupled cell linac (1.3 GHz), and disk loaded structure (1.3 GHz). Because muon has finite life time, the muons should be accelerated in a sufficiently short period. To realize fast acceleration, Alternative Phase Focusing (APF) scheme is adopted in IH-DTL in which the muons are accelerated from 0.34 MeV to about 4 MeV. In this poster, the design of the APF IH-DTL for muon acceleraiton with the computer calculation will be presented.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The muon linac for the J-PARC muon g-2/EDM experiment consists of RFQ (324 MHz), IH-DTL (324 MHz), DAW coupled cell linac (1.3 GHz), and disk loaded structure (1.3 GHz). Because muon has finite life time, the muons should be accelerated in a sufficiently short period. To realize fast acceleration, Alternative Phase Focusing (APF) scheme is adopted in IH-DTL in which the muons are accelerated from 0.34 MeV to about 4 MeV. In this poster, the design of the APF IH-DTL for muon acceleraiton with the computer calculation will be presented.
Key concepts: Muon, Nuclear physics, Physics, Linear particle accelerator, J-PARC, Particle physics, Beam (structure), Optics