6th Symposium on Large TPCs for Low Energy Rare Event Detection | |
Micromegas-TPC operation at high pressure in Xenon-trimethylamine mixtures | |
Herrera, D.C.^1 ; Cebrián, S.^1 ; Dafni, T.^1 ; Ferrer-Ribas, E.^2 ; Giomataris, I.^2 ; Gonzalez-Diaz, D.^1,3 ; Gómez, H.^1,4 ; Iguaz, F.J.^1 ; Irastorza, I.G.^1 ; Luzon, G.^1 ; Rodríguez, A.^1 ; Segui, L.^1 ; Tomás, A.^1 | |
Laboratorio de Física Nuclear y Astropartículas, Universidad de Zaragoza, Zaragoza, Spain^1 | |
IRFU, Centre d'Etudes Nucleaires de Saclay (CEA-Saclay), 91191 Gif sur Yvette, France^2 | |
Department of Engineering Physics, Tsinghua University, Liuqing Building, Beijing, China^3 | |
Laboratoire de l'Accélérateur Linéaire, Université Paris-Sud 11, Orsay Cedex, France^4 | |
关键词: Concentration values; Double beta decay; Electron drift velocity; Energy resolutions; Measurements of; Penning mixtures; Penning-like energy transfer; Work measurement; | |
Others : https://iopscience.iop.org/article/10.1088/1742-6596/460/1/012012/pdf DOI : 10.1088/1742-6596/460/1/012012 |
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来源: IOP | |
【 摘 要 】
We present in this work measurements performed with a small Micromegas-TPC using a xenon-trimethylamine (Xe-TMA) Penning-mixture as filling gas. Measurements of gas gain and energy resolutions for 22.1 keV X-rays are presented, spanning several TMA concentrations and pressures between 1 and 10 bar. Across this pressure range, the best energy resolution and largest increase in gain at constant field (a standard figure for characterizing Penning-like energy transfers) is observed within the 0.9%-1.7% TMA range. A gain increase (at constant field) up to a factor 100 and best values of the energy resolution improved by up to a factor 3 with respect to the one previously reported in pure Xe -operated Micromegas, can be obtained. In virtue of the VUV-quenching properties of the mixture, the overall maximum gain achievable is also notably increased (up to 400 at 10bar), a factor ×3 higher than in pure Xe. In addition, preliminary measurements of the electron drift velocity in a modified setup have been performed and show good agreement with the one obtained from Magboltz. These results are of great interest for calorimetric applications in gas Xe TPCs, in particular for the search of the neutrino-less double beta decay (0νββ) of139Xe. It is important to note that in this work some figures from [1] have been updated. Precisely, the TMA concentration has been re-estimated after a detailed re-calibration of the mass spectrometer yielding lower TMA concentration values, corrected by a factor in the range 0.5-0.7. An erratum to [1] is being submitted at the moment of writing.
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