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論文

Deflector design for spin rotator in muon linear accelerator

Artikova, S.; 近藤 恭弘; 三部 勉*; 大谷 将士*

Proceedings of 28th International Linear Accelerator Conference (LINAC 2016) (Internet), p.830 - 832, 2017/05

A muon g-2/EDM experiment based on muon linear accelerator was proposed for the J-PARC muon facility. In this experiment, the ultra-slow muons created in muonium target region will be accelerated to 210 MeV kinetic energy then will be injected into the muon storage magnet to measure the decay products depending on the muon spin. Therefore, a spin rotator (device) is a key component of the muon linac. Spin rotator consists of a pair of combined electrostatic and magnetic deflectors and a pair of solenoids which will be placed in between these two deflectors. In this paper, we report the design of these two dispersionless deflectors and the simulation results of the device performance will be discussed.

論文

J-PARCにおけるミューオンg-2/EDM精密測定実験のためのミューオンリニアック

近藤 恭弘; 長谷川 和男; 伊藤 崇; Artikova, S.; 大谷 将士*; 三部 勉*; 内藤 富士雄*; 吉田 光宏*; 北村 遼*; 岩下 芳久*; et al.

Proceedings of 13th Annual Meeting of Particle Accelerator Society of Japan (インターネット), p.66 - 69, 2016/11

ミューオン加速のための加速器を開発中である。この加速器により、ミューオンの異常磁気モーメントを0.1ppmの精度で、また電気双極子モーメントを10E-21e cmの精度で測定することが可能となり、素粒子の標準理論をこえる物理の探索ができるようになる。このミューオンリニアックは、超低速ミューオン源,高周波四重極リニアック,交差櫛形Hモードドリフトチューブリニアック,ディスクアンドワッシャ型結合空洞リニアック,円盤装荷型進行波リニアックからなる。本論文では、このミューオンリニアックの開発状況、特にビーム力学設計について述べる。

論文

Space charge neutralization studies with H$$^{-}$$ beam in low energy beam transport test stand

Artikova, S.; 高木 昭*; 柴田 崇統*; 池上 清*

Proceedings of 7th International Particle Accelerator Conference (IPAC '16) (Internet), p.677 - 679, 2016/06

J-PARC is intensity-upgraded up to pulse current of 50 mA of H$$^{-}$$ beam. Two-solenoid based LEBT test stand is being built to support the operation of J-PARC linac. It imitates the actual LEBT of linac, yet contains the diagnostics chamber composed of horizontal and vertical beam emittance meters and Faraday-cup for the current measurement. Vacuum composition of LEBT is predominantly H$$_2$$ gas. The pressure inside the LEBT can be varied by the differential pumps allowing us to study the beam phase space evolution under space charge effects. The measurements of the beam phase space emittance were made as a function of the residual gas pressure. This paper presents the results and discussion on beam space charge neutralization and its effect on the beam phase space emittance.

論文

Comparative study of beam dynamics in the RFQ for J-PARC linac

Artikova, S.; 近藤 恭弘; 森下 卓俊

Proceedings of 12th Annual Meeting of Particle Accelerator Society of Japan (インターネット), p.1004 - 1007, 2015/09

A new linac front-end had been installed for intensity upgrade of J-PARC in 2014, July - September. It consists of a 50 keV Ion Source (IS), a two-magnetic solenoid based Low Energy Beam Transport (LEBT) and 324 MHz RFQ accelerating 50 mA H$$^{-}$$ beam to 3 MeV. In the linac, there are three beam transport sections were implemented to match the beam between the different accelerator elements. This paper presents the simulation study of high intensity beam dynamics in the RFQ and beam transport using Mathematica and General Particle Tracer code. Comparison of studies of a uniformly generated particle distribution and a more realistic beam, the distribution re-constructed from Test Stand emittance measurement has been made. Emittance and twiss parameters at the exit of RFQ are determined and can be used for beam matching optimization in the Medium Energy Beam Transport (MEBT1) section.

論文

Space charge simulation and matching at low energy section of J-PARC LINAC

Artikova, S.; 近藤 恭弘; 森下 卓俊

Proceedings of 6th International Particle Accelerator Conference (IPAC '15) (Internet), p.251 - 254, 2015/06

An intensity upgrade of J-PARC included the installation of a new IS and a RFQ which to be used at first stage of acceleration. The linac is divided into 2 sections on the basis of operating frequencies and 3 sections on the basis of family of RF cavities to be used for the acceleration of 50 mA H$$^{-}$$ beam from 50 keV to 400 MeV. Low energy part of linac consists of an IS, a 2-solenoid beam transport and RFQ. The transition from one section to another can limit the acceptance of the linac if these are not matched properly in both longitudinal and transverse plane. We have calculated the acceptance of the RFQ at zero current, then a particle tracking technique is employed to study the space charge effects in LEBT of the J-PARC linac after the intensity upgrade in order to match the beam to the RFQ. Also, RFQ tank level and intervene voltage calibration factor is determined by comparing the simulation results of the beam transmission with the test measurement of tank level vs. transmission.

口頭

Particle tracking simulation for muon initial acceleration

Artikova, S.

no journal, , 

Muon linear accelerator provides a high momentum beam for muon g-2/EDM experiments at J-PARC. Therefore, muon acceleration and calculation of the final efficiency are the important issues for this project. In my talk, at the 9th collaboration meeting, the results of particle tracking simulation for muon initial acceleration is presented. The contribution will be included in the technical design report of g-2/EDM experiment. Details of parameters and the ideas to improve the total acceleration efficiency were discussed.

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