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基于NEXT-白色探测器中扩散的事件位置重建演示。

Demonstration of event position reconstruction based on diffusion in the NEXT-white detector.

作者信息

Haefner J, Navarro K E, Guenette R, Jones B J P, Tripathi A, Adams C, Almazán H, Álvarez V, Aparicio B, Aranburu A I, Arazi L, Arnquist I J, Auria-Luna F, Ayet S, Azevedo C D R, Bailey K, Ballester F, Barrio-Torregrosa M Del, Bayo A, Benlloch-Rodríguez J M, Borges F I G M, Brodolin A, Byrnes N, Cárcel S, Carrión J V, Cebrián S, Church E, Cid L, Conde C A N, Contreras T, Cossío F P, Dey E, Díaz G, Dickel T, Elorza M, Escada J, Esteve R, Felkai R, Fernandes L M P, Ferrario P, Ferreira A L, Foss F W, Freitas E D C, Freixa Z, Generowicz J, Goldschmidt A, Gómez-Cadenas J J, González R, Grocott J, Hafidi K, Hauptman J, Henriques C A O, Morata J A Hernando, Herrero-Gómez P, Herrero V, Hervés Carrete C, Ifergan Y, Labarga L, Larizgoitia L, Larumbe A, Lebrun P, Lopez F, López-March N, Madigan R, Mano R D P, Marques A P, Martín-Albo J, Martínez-Lema G, Martínez-Vara M, Meziani Z E, Miller R L, Mistry K, Molina-Canteras J, Monrabal F, Monteiro C M B, Mora F J, Muñoz Vidal J, Novella P, Nuñez A, Nygren D R, Oblak E, Palacio J, Palmeiro B, Para A, Parmaksiz I, Pelegrin J, Pérez Maneiro M, Querol M, Redwine A B, Renner J, Rivilla I, Rodríguez J, Rogero C, Rogers L, Romeo B, Romo-Luque C, Santos F P, Dos Santos J M F, Shomroni I, Simón A, Soleti S R, Sorel M, Soto-Oton J, Teixeira J M R, Toledo J F, Torrent J, Trettin A, Usón A, Veloso J F C A, Waiton J, White J T

机构信息

Department of Physics, Harvard University, Cambridge, 02138 MA USA.

Department of Physics, University of Texas at Arlington, Arlington, 76019 TX USA.

出版信息

Eur Phys J C Part Fields. 2024;84(5):518. doi: 10.1140/epjc/s10052-024-12865-9. Epub 2024 May 21.

Abstract

Noble element time projection chambers are a leading technology for rare event detection in physics, such as for dark matter and neutrinoless double beta decay searches. Time projection chambers typically assign event position in the drift direction using the relative timing of prompt scintillation and delayed charge collection signals, allowing for reconstruction of an absolute position in the drift direction. In this paper, alternate methods for assigning event drift distance via quantification of electron diffusion in a pure high pressure xenon gas time projection chamber are explored. Data from the NEXT-White detector demonstrate the ability to achieve good position assignment accuracy for both high- and low-energy events. Using point-like energy deposits from Kr calibration electron captures ( keV), the position of origin of low-energy events is determined to 2 cm precision with bias mm. A convolutional neural network approach is then used to quantify diffusion for longer tracks ( MeV), from radiogenic electrons, yielding a precision of 3 cm on the event barycenter. The precision achieved with these methods indicates the feasibility energy calibrations of better than 1% FWHM at Q in pure xenon, as well as the potential for event fiducialization in large future detectors using an alternate method that does not rely on primary scintillation.

摘要

惰性元素时间投影室是物理学中稀有事件探测的领先技术,例如用于暗物质和无中微子双β衰变搜索。时间投影室通常利用快速闪烁和延迟电荷收集信号的相对时间来确定事件在漂移方向上的位置,从而实现漂移方向上绝对位置的重建。在本文中,探索了通过量化纯高压氙气时间投影室中电子扩散来确定事件漂移距离的替代方法。来自NEXT-White探测器的数据表明,对于高能和低能事件都能实现良好的位置确定精度。利用氪校准电子俘获(keV)产生的点状能量沉积,低能事件的起源位置被精确到2厘米,偏差为毫米。然后使用卷积神经网络方法来量化来自放射性电子的较长轨迹(MeV)的扩散,在事件质心处的精度达到3厘米。这些方法所达到的精度表明,在纯氙中,在Q处实现优于1%半高宽的能量校准是可行的,同时也表明了在未来大型探测器中使用不依赖于初级闪烁的替代方法进行事件定标的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/408c/11108901/e18051f51e1a/10052_2024_12865_Fig1_HTML.jpg

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