Belle II Document Server 5 records found  Search took 0.01 seconds. 
1. Time-Integrated Measurement of the Branching Fraction and Direct CP Asymmetry of B0 → KS0π0 Decay at Belle II / Shu-Ping Lin ; Pao-Ti Chang [BELLE2-MTHESIS-2024-009] Presented on 27 03 2023 MSc
2023
National Taiwan University / Taipei
We report updated measurements of the branching ratio and the direct CP-violating asym- metry in B0 → KS0π0 decay at Belle II. [...]
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2. Sensitivity Study of $B^{+}\rightarrow \mu^{+}\nu$ in the Belle II Experiment / Yen-Ting Chin ; Pao-Ti Chang [BELLE2-MTHESIS-2021-068] Presented on 25 01 2021 MSc
2021
National Taiwan University / Taipei, Taiwan
In this study, we intend to estimate the statistical significance of $B^{+}\rightarrow \mu^{+}\nu$ when various amounts of Belle II data are available in the future, assuming that the Standard Model estimation of the branching fraction of $B^{+}\rightarrow \mu^{+}\nu$ is correct. [...]
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3. Measurements of branching fractions and CP-violating charge asymmetries in charmless $B$ decays reconstructed in 2019--2020 Belle~II data / F. Abudinén ; P.-T. Chang ; Y.-C. (Janice) Chen ; E. Ganiev ; et al [BELLE2-CONF-PH-2020-012] Prepared for ICHEP2020
20 September 2020

We report on first measurements of branching fractions~($\mathcal{B}$) and CP-violating charge asymmetries~($\mathcal{A}_{\rm CP}$) in charmless $B$ decays at Belle~II. [...]
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4. Search for $D^{0}\to\nu\bar{\nu}$ and $B^{0}\to p\bar{\Lambda}\pi^{-}\gamma$ decay at Belle, and Belle II CDCTRG system firmware design / Yun-Tsung Lai ; Min-Zu Wang ; Paoti Chang ; Jing-Ge Shiu [BELLE2-PTHESIS-2016-007] Presented on 13 07 2016 PhD
2016
National Taiwan University / Taipei, Taiwan
The thesis includes three major topics. [...]
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5. Physics at Super B Factory / T. Aushev ; W. Barte ; A. Bondar ; J. Brodzicka ; et al [KEK Report 2009-12] [arXiv:1002.5012] [BELLE2-REPORT-2016-002]
11 February 2010

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 8×10^35 cm−2s−1, which is around 50 times as large as the peak luminosity achieved by the KEKB collider. [...]
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