利用高粒度闪烁体 - 钢强子量能器验证 GEANT4 蒙特卡洛模型
仪器与探测器
2014-06-17 v3 高能物理 - 实验
摘要
高粒度量能器是粒子流(Particle Flow)范式的基本要求。本文聚焦于一种具有模拟读出的强子量能器原型,该原型由 38 层闪烁体层与钢吸收体平面交替组成。闪烁体板被精细分割成瓦片,并通过硅光电倍增管(Silicon Photomultipliers)单独读出。所展示的结果基于在 8GeV 至 100GeV 能量范围内收集的π介子束流数据。灵敏层的精细分割和高采样频率使得能够极佳地重建强子簇射的空间发展过程。本文展示了数据与蒙特卡洛模拟之间的对比,涉及强子簇射的纵向和横向发展以及量能器的整体响应。评估了多种 GEANT4 物理列表针对这些观测量的性能。
引用
@article{arxiv.1306.3037,
title = {Validation of GEANT4 Monte Carlo Models with a Highly Granular Scintillator-Steel Hadron Calorimeter},
author = {C. Adloff and J. Blaha and J. -J. Blaising and C. Drancourt and A. Espargilière and R. Gaglione and N. Geffroy and Y. Karyotakis and J. Prast and G. Vouters and K. Francis and J. Repond and J. Schlereth and J. Smith and L. Xia and E. Baldolemar and J. Li and S. T. Park and M. Sosebee and A. P. White and J. Yu and T. Buanes and G. Eigen and Y. Mikami and N. K. Watson and G. Mavromanolakis and M. A. Thomson and D. R. Ward and W. Yan and D. Benchekroun and A. Hoummada and Y. Khoulaki and J. Apostolakis and A. Dotti and G. Folger and V. Ivantchenko and V. Uzhinskiy and M. Benyamna and C. Cârloganu and F. Fehr and P. Gay and S. Manen and L. Royer and G. C. Blazey and A. Dyshkant and J. G. R. Lima and V. Zutshi and J. -Y. Hostachy and L. Morin and U. Cornett and D. David and G. Falley and K. Gadow and P. Göttlicher and C. Günter and B. Hermberg and S. Karstensen and F. Krivan and A. -I. Lucaci-Timoce and S. Lu and B. Lutz and S. Morozov and V. Morgunov and M. Reinecke and F. Sefkow and P. Smirnov and M. Terwort and A. Vargas-Trevino and N. Feege and E. Garutti and I. Marchesinik and M. Ramilli and P. Eckert and T. Harion and A. Kaplan and H. -Ch. Schultz-Coulon and W. Shen and R. Stamen and B. Bilki and E. Norbeck and Y. Onel and G. W. Wilson and K. Kawagoe and P. D. Dauncey and A. -M. Magnan and V. Bartsch and M. Wing and F. Salvatore and E. Calvo Alamillo and M. -C. Fouz and J. Puerta-Pelayo and B. Bobchenko and M. Chadeeva and M. Danilov and A. Epifantsev and O. Markin and R. Mizuk and E. Novikov and V. Popov and V. Rusinov and E. Tarkovsky and N. Kirikova and V. Kozlov and P. Smirnov and Y. Soloviev and P. Buzhan and A. Ilyin and V. Kantserov and V. Kaplin and A. Karakash and E. Popova and V. Tikhomirov and C. Kiesling and K. Seidel and F. Simon and C. Soldner and M. Szalay and M. Tesar and L. Weuste and M. S. Amjad and J. Bonis and S. Callier and S. Conforti di Lorenzo and P. Cornebise and Ph. Doublet and F. Dulucq and J. Fleury and T. Frisson and N. van der Kolk and H. Li and G. Martin-Chassard and F. Richard and Ch. de la Taille and R. Pöschl and L. Raux and J. Rouëné and N. Seguin-Moreau and M. Anduze and V. Boudry and J-C. Brient and D. Jeans and P. Mora de Freitas and G. Musat and M. Reinhard and M. Ruan and H. Videau and B. Bulanek and J. Zacek and J. Cvach and P. Gallus and M. Havranek and M. Janata and J. Kvasnicka and D. Lednicky and M. Marcisovsky and I. Polak and J. Popule and L. Tomasek and M. Tomasek and P. Ruzicka and P. Sicho and J. Smolik and V. Vrba and J. Zalesak and B. Belhorma and H. Ghazlane and T. Takeshita and S. Uozumi and M. Götze and O. Hartbrich and J. Sauer and S. Weber and C. Zeitnitz},
journal= {arXiv preprint arXiv:1306.3037},
year = {2014}
}