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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Drift field limitations to the energy resolution in Time Projection Chambers for~136Xe neutrino-less double beta decay search
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Drift field limitations to the energy resolution in Time Projection Chambers for~136Xe neutrino-less double beta decay search

机译:约136Xe无中微子双β衰变搜索在时间投影室中能量分辨率的漂移场限制

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摘要

The effect of drift electric field in the degradation of the energy resolution of gaseous xenon Time Projection Chambers for the search of neutrino-less double beta decay of~(136)Xe is calculated with the PENELOPE code. Calculations are presented first for single electron emission with energies from 0.2 to 3 MeV and reduced electric fields in the 0.1-2 V cm-1 Torr-1' range, showing energy resolution degradations by as much as 12% (FWHM). Calculations are also presented for neutrino-less double beta decay of~(136)Xe assuming two decay mechanisms, the mass mechanism (MM) and the right-handed current due to the X parameter (RHC;) mechanism, for reduced drift electric fields in the 0.03-0.8 V cm~(-1) Torr~(-1) range. It is shown that the drift field degrades the energy resolution of the two electrons sum peak (2457.8 keV) by an amount that is significant even for reduced fields as low as 0.1 V cm~(-1) Torr~(-1). It is concluded that to reach the experimental target of 1% (FWHM) for the energy resolution of TPCs set-ups (like the NEXT collaboration set-up) the drift electric field should be weaker than about 0.1 V cm~(-1) Torr~(-1).
机译:用PENELOPE代码计算了漂移电场对气态氙时间投射腔能量分辨率的影响,以寻找〜(136)Xe的无中微子双β衰变。首先介绍了能量为0.2到3 MeV的单电子发射以及在0.1-2 V cm-1 Torr-1'范围内减小的电场的计算,结果表明能量分辨率降低了12%(FWHM)。还给出了〜(136)Xe的无中微子双β衰变的计算,其中假设了两种衰变机制,即质量机制(MM)和归因于X参数(RHC;)的右旋电流,以减少漂移电场在0.03-0.8 V cm〜(-1)Torr〜(-1)范围内。结果表明,漂移场使两个电子总和峰的能量分辨率(2457.8 keV)降低了一个显着的水平,即使对于低至0.1 V cm〜(-1)Torr〜(-1)的减小场也是如此。结论是,要达到TPC装置(如NEXT协作装置)能量分辨率的1%(FWHM)的实验目标,漂移电场应弱于约0.1 V cm〜(-1)托〜(-1)。

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