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CP-violation reach of an electron capture neutrino beam

机译:电子俘获中微子束的CP违反范围

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This article extends the work of Bernabeu and Espinoza by examining the CP-violation reach of a 150Dy electron capture beam through the variation of the two Lorentz boosts, the number of useful electron capture decays, the relative run time of each boost and the number of atmospheric backgrounds. The neutrinos are assumed to be sourced at CERN with an upgraded SPS and are directed towards a 440 kton Water Cerenkov detector located at the Canfranc laboratory. Two large 鈥楥P-coverage鈥?choices for the boost pairings are found; a 未-symmetrical coverage for (纬 1, 纬 2) = (280, 160) and an 未-asymmetric coverage for (纬 1 , 纬 2) = (440,150). With a nominal useful decay rate of N ions = 1018 ions per year, the 未-symmetric setup can rule out CP-conservation down to sin2 2胃 13 = 3鈭?0鈭?. To reach sin2 2胃 13 =1鈭?0鈭? for both 未 < 0 and 未 > 0 requires a useful decay rate of N ions = 6鈭?017 ions per year.
机译:本文通过两个洛伦兹助推器的变化,有用电子俘获衰变的数量,每次助推的相对运行时间以及电子发射次数的变化来研究150Dy电子俘获束的CP违反范围,从而扩展了Bernabeu和Espinoza的工作。大气背景。假定中微子来自CERN,带有升级的SPS,并且被引向位于Canfranc实验室的440吨Water Cerenkov检测器。发现了用于增强配对的两个较大的“ P-coverage”选择; (纬1,纬2)=(280,160)的未对称覆盖和(纬1,纬2)=(440,150)的未对称覆盖。以每年N离子= 1018离子的名义有用衰减率,不对称的设置可以排除CP保守性,直到sin2 2胃13 = 3鈭0鈭。达到sin2 2胃13 = 1鈭?0鈭?对于未<0和未> 0,每年需要一个有用的N离子衰减率= 6×017离子。

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