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Toroidal magnetized iron neutrino detector for a neutrino factory

机译:中微子工厂用环形磁化铁中微子探测器

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A neutrino factory has unparalleled physics reach for the discovery and measurement of $CP$ violation in the neutrino sector. A far detector for a neutrino factory must have good charge identification with excellent background rejection and a large mass. An elegant solution is to construct a magnetized iron neutrino detector (MIND) along the lines of MINOS, where iron plates provide a toroidal magnetic field and scintillator planes provide 3D space points. In this paper, the current status of a simulation of a toroidal MIND for a neutrino factory is discussed in light of the recent measurements of large ${ensuremath{heta}}_{13}$. The response and performance using the 10 GeV neutrino factory configuration are presented. It is shown that this setup has equivalent ${ensuremath{delta}}_{CP}$ reach to a MIND with a dipole field and is sensitive to the discovery of $CP$ violation over 85% of the values of ${ensuremath{delta}}_{CP}$.
机译:中微子工厂拥有无与伦比的物理影响力,可用于发现和测量中微子领域违反$ CP $的行为。中微子工厂的远距离探测器必须具有良好的电荷识别能力,并具有出色的背景抑制能力和质量。一个不错的解决方案是沿着MINOS的线构造一个磁化的铁中微子探测器(MIND),其中铁板提供环形磁场,而闪烁体平面提供3D空间点。在本文中,根据最近对大$ { ensuremath { theta}} _ {13} $的测量,讨论了中微子工厂的环形MIND仿真的当前状态。介绍了使用10 GeV中微子工厂配置的响应和性能。结果表明,此设置对具有偶极子场的MIND具有等效的$ { ensuremath { delta}} _ {CP} $,并且对$ CP $超过$ {的85%的值的违反情况的发现很敏感。 ensuremath { delta}} _ {CP} $。

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