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Proposal for an MRPC system with high-precision timing in the LVD structure

机译:LVD结构中具有高精度定时的MRPC系统的建议

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The purpose of this paper is to present a project in order to verify —without the need of knowing the distance CERN-Gran Sasso— the discovery made by the OPERA Collaboration concerning the speed of the CERN neutrinos. The project consists of two parts. A simple one and a less simple one. Both have the great advantage of being totally independent of the knowledge of the distance, ? 732 km, between the two Labs, CERN and LNGS, where the neutrinos are produced and detected, respectively. The “simple” version of this project is based on the high-energy horizontal cosmic muons, which traverse LVD and OPERA detectors, thus allowing to cross-calibrate the timing systems of both experiments in a way which is totally independent of the TOF measurements of CNGS. This component of the project is being studied in collaboration with the OPERA group, as the time stabilities of both experiments are needed. In fact it is since a long time that the two groups are engaged with this problem. In this paper we will present and discuss the “less simple” part which allows to establish, at the highest possible level of accuracy, if (v > c) effects really exist.
机译:本文的目的是提出一个项目,以验证OPERA合作组织关于CERN中微子速度的发现,而无需知道CERN-Gran Sasso的距离。该项目包括两个部分。一个简单的和不太简单的一个。两者都具有完全独立于距离知识的巨大优势。在两个实验室CERN和LNGS之间732公里,分别产生和探测中微子。该项目的“简单”版本基于穿越LVD和OPERA检测器的高能水平宇宙μ子,因此允许以完全独立于TOF测量的方式交叉校准两个实验的计时系统。 CNGS。正在与OPERA小组合作研究此项目的组成部分,因为这需要两个实验的时间稳定性。实际上,很长一段时间以来,这两个小组都参与了这个问题。在本文中,我们将介绍和讨论“不太简单”的部分,该部分允许以最大可能的准确性确定是否确实存在(v> c)效应。

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    《The European Physical Journal Plus》 |2012年第4期|1-12|共12页
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  • 入库时间 2022-08-17 13:14:16

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