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POSITRON INJECTOR LINAC UPGRADE FOR SUPERKEKB

T. Kamitani, M. Akemoto, Y. Arakida, Dai Arakawa, Atsushi Enomoto, Shigeki Fukuda, K. Furukawa, Yukihito Higashi, T. Higo, Hiroaki Honma, N. Iida, Mitsuo Ikeda, E. Kadokura, K. Kakihara, Hideaki Katagiri, Miho Kurashina, Hideki Matsushita, Shuji Matsumoto, T. Matsumoto, Shinichiro Michizono, K. Mikawa, Takako Miura, F. Miyahara, T. Mori, H. Nakajima, K. Nakao, Takuya Natsui, A. Ohsawa, Y. Ogawa, Masanori Satoh, T. Shidara, A. Shirakawa, T. Suwada, Hiroshi Sugimoto, Tetsuya TAKATOMI, T. Takenaka, Y. Yano, K. Yokoyama, M. Yoshida, L. Zang, Xiangyu Zhou, Daisuke Satoh

Open publisher page 3 citations

Abstract

This paper reports on a present status of a positron injector linac upgrade for SuperKEKB. A development status of a flux concentrator for positron focusing is shown. An influence of offset layout of the flux concentrator and the target on a positron yield is described. Positron capture by L-band and large aperture S-band accelerating structures are compared in a viewpoint of satellite bunch elimination. Beam optical design compatible to electrons and positrons of different beam energies is discussed.

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What this paper is about

This paper reports on a present status of a positron injector linac upgrade for SuperKEKB. A development status of a flux concentrator for positron focusing is shown. An influence of offset layout of the flux concentrator and the target on a positron yield is described. Positron capture by L-band and large aperture S-band accelerating structures are compared in a viewpoint of satellite bunch elimination. Beam optical design compatible to electrons and positrons of different beam energies is discussed.

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Available abstract

This paper reports on a present status of a positron injector linac upgrade for SuperKEKB. A development status of a flux concentrator for positron focusing is shown. An influence of offset layout of the flux concentrator and the target on a positron yield is described. Positron capture by L-band and large aperture S-band accelerating structures are compared in a viewpoint of satellite bunch elimination. Beam optical design compatible to electrons and positrons of different beam energies is discussed.

Key concepts: Positron, Linear particle accelerator, Injector, Upgrade, Physics, Nuclear physics, Offset (computer science), Concentrator

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