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Fluctuation in energy-loss measurements in allene-doped liquid argon for heavy ions

机译:掺丙二烯的液氩中重离子能量损失测量值的波动

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Liquid argon (LAr) has suitable properties for use as a particle-detector medium, however, its response to heavy ions is not linear, because of the non-perfect collection of charge produced by the incident ions due to the strong recombination between the liberated electrons and argon ions. We were able to improve the linearity of the response by doping photoionization materials, such as allene (C_3H_4), to LAr. Using allene-doped LAr, we made some experiments of the heavy ion calorimeters for the mass identification of relativistic iron ions, but this approach was unsuccessful. We therefore investigated the cause of the failure using relativistic heavy ions of neon, argon and iron. The energy resolutions obtained experimentally were of the order of several percent at the full width at half maximum (FWHM) for neon to iron ions passing through a LAr gap of 10mm. These values were 2 or 3 times worse than those predicted theoretically, and the poor energy resolution led to insufficient mass resolution. Here, we describe methods for measuring fluctuation in energy-loss signals in LAr, and discuss the factors determining the resolution.
机译:液态氩(LAr)具有适合用作粒子检测器介质的特性,但是,由于重离子之间的强结合,入射离子产生的电荷不完全收集,因此它对重离子的响应不是线性的电子和氩离子。我们能够通过将光离子化材料(例如丙二烯(C_3H_4))掺杂到LAr中来改善响应的线性。我们使用掺有异戊烯的LAr对重离子量热仪进行了一些实验,以相对论铁离子的质量鉴定,但是这种方法没有成功。因此,我们使用相对论性的氖气,氩气和铁离子研究了失败的原因。对于通过10mm LAr间隙的氖离子至铁离子,实验获得的能量分辨率约为半峰全宽(FWHM)的百分之几。这些值比理论上预测的值差2到3倍,并且较差的能量分辨率导致质量分辨率不足。在这里,我们描述了测量LAr中能量损失信号波动的方法,并讨论了确定分辨率的因素。

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