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Physics Potential of Beta/EC Beams in regard to CP Violation in Neutrino Oscillations

机译:Beta / EC光束的物理潜力在中微子振荡中的CP违规方面

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The goal for future neutrino facilities is the determination of the [Ue3] mixing and CP violation in neutrino oscillations. This will require precision experiments with a very intense neutrino source. With this objective the creation of neutrino beams from the radioactive decay of boosted ions by the SPS of CERN from either beta or electron capture transitions has been propossed. We discuss the capabilities of such facilities as a function of the energy of the boost and the baseline for the detector. We conclude that the SPS upgrade to 1000 GeV is crucial to have a better sensitivity to CP violation if it is accompanied by a longer baseline. We compare the physics potential for two different configurations. In the case of beta beams, with the same boost for both β+ (neutrinos) and β-(antineutrinos), the two setups are: I) γ = 120, L = 130 Km (Frejus); II) γ= 330, L = 650 Km (Canfranc). In the case of monochromatic EC beams we exploit the energy dependence of neutrino oscillations to separate out the two parameters U(e3) and the CP phase δ. Setup I runs at γ= 90 and γ= 195 (maximum achievable at present SPS) to Frejus, whereas Setup II runs at γ= 195 and γ= 440 (maximum achievable at upgraded SPS) to Canfranc. The main conclusion is that, whereas the gain in the determination of U(e3) is rather modest, setup II provides much better sensitivity to CP violation.
机译:未来中微子设施的目标是测定[UE3]混合和中微子振荡中的CP违规。这将需要具有非常强烈的中微子源的精确实验。目的,从CERN的SP,从β或电子捕获过渡的SP,CERN的来自升压离子的放射性衰减的中微粒梁的产生已经受到了预测。我们讨论这些设施的能力作为升压能量和探测器的基线的功能。我们得出结论,如果伴随着较长的基线,SPS升级到1000 gev对CP违规具有更好的敏感性至关重要。我们将物理潜力与两种不同的配置进行比较。在β梁的情况下,对于β+(Neutrinos)和β-(A​​nteineutrinos)的升压相同,两个设置是:i)γ= 120,L = 130km(Frejus); II)γ= 330,L = 650 km(CANFRANC)。在单色EC光束的情况下,我们利用中微子振荡的能量依赖性分离出两个参数U(E3)和CP相位δ。设置I在γ= 90和γ= 195(目前SPS的最大可实现的γ= 195处运行,而设置II在γ= 195和γ= 440(升级的SPS上最大可实现)运行到CANFRANC。主要结论是,虽然U(E3)测定的增益是适当的,但是Setup II为CP违规提供了更好的敏感性。

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