2D TRACKING CODE FOR DRIFT TUBE LINAC
A. Yamaguchi, Noriyosu Hayashizaki, Y. Iwata, Koichi Nakayama, Keiko Okaya, Kosuke Sato, Takeshi Takeuchi, Satoru Yamada
Abstract
A. Yamaguchi, Noriyosu Hayashizaki, Y. Iwata, Koichi Nakayama, Keiko Okaya, Kosuke Sato, Takeshi Takeuchi, Satoru Yamada
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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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