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CAP-TRIUMF Vogt Medal for Contributions to Subatomic Physics La Médaille Vogt de l'ACP-TRIUMF pour l'excellence en physique subatomique

机译:CAP-TRIUMF沃格特奖章,对亚原子物理学的贡献CAP-TRIUMF沃格特奖章,对亚原子物理学的杰出贡献

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At every stage of his career, Konaka's research has impacted rare-process physics. His doctoral work developed techniques to search for weakly interacting particles, like axions, that have since found new life in "dark photon" searches. As a TRIUMF researcher working at Brookhaven National Laboratory in the 1990s, he introduced a blind analysis technique to increase confidence in Experiment 787's ultra-rare kaon-decay result that has since become the standard in the field. As the Canadian leader for the T2K experiment, he successfully pushed for the use of an offaxis neutrino beam, and led the development of key detector and analysis systems, innovations that had a major impact on T2K's dramatic result establishing electron neutrino appearance from a muon neutrino beam, a result that led to the 2016 Breakthrough Prize in Fundamental Physics. His innovations continue with a new proposal to reduce neutrino flux and cross section uncertainties at an upgraded T2K-Phase 2,which could lead to a significant measurement of the CP violation parameter delta, the holy grail of neutrino-oscillation physics.
机译:在Konaka的职业生涯的每个阶段,他的研究都对稀有过程物理学产生了影响。他的博士工作开发了寻找弱相互作用粒子(例如轴)的技术,此后在“暗光子”搜索中找到了新的生命。作为1990年代在布鲁克黑文国家实验室(Brookhaven National Laboratory)工作的TRIUMF研究人员,他介绍了一种盲分析技术,以提高人们对实验787的超稀有钾离子衰变结果的信心,该结果已成为该领域的标准。作为加拿大T2K实验的负责人,他成功推动了离轴中微子束的使用,并领导了关键探测器和分析系统的开发,这些创新对T2K的戏剧性结果产生了重大影响,该显着结果是通过介子中微子建立电子中微子的外观光束,该成果获得了2016年基础物理学突破奖。他的创新继续提出了一项新建议,即在升级的T2K阶段2减少中微子通量和截面不确定性,这可能导致对CP违规参数delta(中微子振荡物理学的圣杯)进行大量测量。

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