2019JACOWOpen access

2D TRACKING CODE FOR DRIFT TUBE LINAC

A. Yamaguchi, Noriyosu Hayashizaki, Y. Iwata, Koichi Nakayama, Keiko Okaya, Kosuke Sato, Takeshi Takeuchi, Satoru Yamada

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Abstract

A 2D tracking code has been developed for Alternating-Phase-Focusing drift tube linacs (APF-DTL). This code can design DTLs with a 2D electric field simulation and particle tracking by approximate equations. In this paper, we describe an outline of the 2D tracking code and a comparison of 2D tracking results and 3D simulation.

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What this paper is about

A 2D tracking code has been developed for Alternating-Phase-Focusing drift tube linacs (APF-DTL). This code can design DTLs with a 2D electric field simulation and particle tracking by approximate equations. In this paper, we describe an outline of the 2D tracking code and a comparison of 2D tracking results and 3D simulation.

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Available abstract

A 2D tracking code has been developed for Alternating-Phase-Focusing drift tube linacs (APF-DTL). This code can design DTLs with a 2D electric field simulation and particle tracking by approximate equations. In this paper, we describe an outline of the 2D tracking code and a comparison of 2D tracking results and 3D simulation.

Key concepts: Tracking (education), Linear particle accelerator, Code (set theory), Computer science, Physics, Programming language, Optics, Psychology

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