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Search for H-dibaryon at J-PARC with a Large Acceptance TPC

机译:使用大型验收TpC在J-paRC上搜索H-dibaryon

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摘要

H-dibaryon has been predicted as a stable 6-quark color-singlet state. It has been searched for by many experiments but has never been discovered. Recent lattice QCD calculations predict H-dibaryon as a weakly bound or a resonant state close to the  threshold. E224 and E522 experiments at KEK observed peaks in  invariant mass spectra near the threshold in (K-, K+) reactions, which were statistically not significant. Therefore, we proposed a new experiment E42 at J-PARC. It will measure decay products of  and p in a (K-, K+) reaction. We design a large acceptance spectrometer based on a Time Projection Chamber (TPC) immersed in a dipole magnetic field. The TPC surrounds a target to cover nearly 4 acceptance, and accepts K- beams up to 106 counts per second. To suppress drift field distortion at high beam rates, we adopt Gas Electron Multipliers (GEMs) for electron amplification and a gating grid. We show an overview of the experiment, the design of the spectrometer, and the Ru26D status of the TPC prototype.
机译:H-dibaryon被预测为稳定的6夸克色单态。已经通过许多实验对其进行了搜索,但从未发现过。最近的晶格QCD计算预测H-二重子为弱结合或接近阈值的共振态。在KEK进行的E224和E522实验在(K-,K +)反应阈值附近的不变质谱图中观察到了峰值,在统计上并不显着。因此,我们在J-PARC提出了一个新的实验E42。它将测量(K-,K +)反应中和p的衰减产物。我们基于浸入偶极子磁场中的时间投影室(TPC)设计了一个大型验收光谱仪。 TPC围绕着一个目标,可以覆盖近4的接受范围,并接受每秒高达106个计数的K光束。为了抑制高束速率下的漂移场失真,我们采用了用于电子放大的气体电子倍增器(GEMs)和门控栅极。我们展示了实验的概述,光谱仪的设计以及TPC原型的R u26D状态。

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