2010arXiv (Cornell University)Open access

Physics at Super B Factory

Aushev, T., Bartel, W., Bondar, A., Brodzicka, J., Browder, T. E., Chang, P., Chao, Y., Chen, K. F., Dalseno, J., Drutskoy, A., Enari, Y., Gershon, T., Golob, B., Goto, T., Handa, F., Hara, K., Hashimoto, S., Hayashii, H., Hazumi, M., Higuchi, T., Hisano, J., Hou, W. S., Iijima, T., Ikado, K., Inami, K., Itoh, H., Itoh, R., Ishino, H., Katayama, N., Keum, Y. Y., Kinoshita, K., Kou, E., Križan, P., Krokovny, P., Kurimoto, T., Kwon, Y., Limosani, A., Matsumoto, T., Morozumi, T., Nakahama, Y., Nakao, M., Nishida, S., Ohshima, T., Okada, Y., Okumura, K., Olsen, S. L., Onogi, T., Pakhlova, G., Palka, H., Pakhlov, P., Poluektov, A., Recksiegel, S., Sagawa, H., Saigo, M., Sakai, Y., Sanda, A. I., Schwanda, C., Schwartz, A., Senyo, K., Shimizu, Y., Shindou, T., Sinha, R., Starič, M., Sumisawa, K., Tanaka, M., Trabelsi, K., Urquijo, P., Ushiroda, Y., Won, E., Yamamoto, H., Yamauchi, M., Yoshikawa, T., Zupan, J.

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Abstract

This report presents the results of studies that investigate the physics reach at a Super $B$ factory, an asymmetric-energy $e^+e^-$ collider with a design luminosity of $8 \times 10^{35}$ cm$^{-2}$s$^{-1}$, which is around 50 times as large as the peak luminosity achieved by the KEKB collider. The studies focus on flavor physics and CP violation measurements that could be carried out in the LHC era. The physics motivation, key observables, measurement methods and expected precisions are presented.

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What this paper is about

This report presents the results of studies that investigate the physics reach at a Super $B$ factory, an asymmetric-energy $e^+e^-$ collider with a design luminosity of $8 \times 10^{35}$ cm$^{-2}$s$^{-1}$, which is around 50 times as large as the peak luminosity achieved by the KEKB collider. The studies focus on flavor physics and CP violation measurements that could be carried out in the LHC era. The physics motivation, key observables, measurement methods and expected precisions are presented.

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Available abstract

This report presents the results of studies that investigate the physics reach at a Super $B$ factory, an asymmetric-energy $e^+e^-$ collider with a design luminosity of $8 \times 10^{35}$ cm$^{-2}$s$^{-1}$, which is around 50 times as large as the peak luminosity achieved by the KEKB collider. The studies focus on flavor physics and CP violation measurements that could be carried out in the LHC era. The physics motivation, key observables, measurement methods and expected precisions are presented.

Key concepts: Factory (object-oriented programming), B-factory, Physics, Engineering, Particle physics, Computer science, Programming language

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