PlasticScint_Fibre:粒子检测器的 Geant4 Monte Carlo 模拟-源码

上传者: 42174176 | 上传时间: 2021-07-27 16:05:27 | 文件大小: 637KB | 文件类型: ZIP
C++
使用 Geant4 工具包对闪烁粒子检测器进行蒙特卡罗建模 正在对闪烁中子探测器进行大量研究,作为全球短缺的氦 3 的替代品。 这个特殊的应用是设计一个超冷中子探测器,用于在超流氦中以 0.5 K 运行的中子 EDM 实验。 这项工作是我一部分。 Monte Carlo 模拟在原型探测器的设计和优化中起着至关重要的作用。 闪烁体是一种吸收高能粒子并发射光子的材料,然后可以使用标准光检测器(例如 PMT 或 CCD)对其进行计数。 为了最大限度地提高检测效率,尤其是对低能粒子的检测效率,必须最大限度地提高收集到的光量。 光学模拟包括产生闪烁光,光子的不同体积内的跟踪,并用所述光收集系统和转换成电子信号的相互作用。 要回答的一个重要问题涉及估计的光产额值(测量的光子与产生的光子的百分比),这是优化探测器效率和性能的关键参数。 这将取决于闪烁体的选择、几何形状、包裹探测器的反射材料的选择、机

文件下载

资源详情

[{"title":"( 42 个子文件 637KB ) PlasticScint_Fibre:粒子检测器的 Geant4 Monte Carlo 模拟-源码","children":[{"title":"PlasticScint_Fibre-master","children":[{"title":"PlasticScint_Fibre.err <span style='color:#111;'> 0B </span>","children":null,"spread":false},{"title":"init.in <span style='color:#111;'> 414B </span>","children":null,"spread":false},{"title":"src","children":[{"title":"PSPhysicsListMessenger.cc <span style='color:#111;'> 3.79KB </span>","children":null,"spread":false},{"title":"PSStackingAction.cc <span style='color:#111;'> 3.47KB </span>","children":null,"spread":false},{"title":"PSPhysicsList.cc <span style='color:#111;'> 12.65KB </span>","children":null,"spread":false},{"title":"CathodeHit.cc <span style='color:#111;'> 2.06KB </span>","children":null,"spread":false},{"title":"PSPrimaryGeneratorAction.cc <span style='color:#111;'> 5.20KB </span>","children":null,"spread":false},{"title":"CathodeSD.cc <span style='color:#111;'> 3.88KB </span>","children":null,"spread":false},{"title":"PSSteppingVerbose.cc <span style='color:#111;'> 7.32KB </span>","children":null,"spread":false},{"title":"PSRunAction.cc <span style='color:#111;'> 3.61KB </span>","children":null,"spread":false},{"title":"PSPrimaryGeneratorMessenger.cc <span style='color:#111;'> 3.50KB </span>","children":null,"spread":false},{"title":"PSDetectorConstruction.cc <span style='color:#111;'> 39.23KB </span>","children":null,"spread":false}],"spread":true},{"title":"GNUmakefile <span style='color:#111;'> 485B </span>","children":null,"spread":false},{"title":"README.md <span style='color:#111;'> 5.85KB </span>","children":null,"spread":false},{"title":"PlasticScint_Fibre.out <span style='color:#111;'> 868B </span>","children":null,"spread":false},{"title":"include","children":[{"title":"PSPhysicsListMessenger.hh <span style='color:#111;'> 2.67KB </span>","children":null,"spread":false},{"title":"PSSteppingVerbose.hh <span style='color:#111;'> 2.35KB </span>","children":null,"spread":false},{"title":"PSPrimaryGeneratorMessenger.hh <span style='color:#111;'> 2.65KB </span>","children":null,"spread":false},{"title":"PSStackingAction.hh <span style='color:#111;'> 2.53KB </span>","children":null,"spread":false},{"title":"CathodeSD.hh <span style='color:#111;'> 919B </span>","children":null,"spread":false},{"title":"PSRunAction.hh <span style='color:#111;'> 2.51KB </span>","children":null,"spread":false},{"title":"PSPrimaryGeneratorAction.hh <span style='color:#111;'> 2.75KB </span>","children":null,"spread":false},{"title":"PSPhysicsList.hh <span style='color:#111;'> 3.28KB </span>","children":null,"spread":false},{"title":"PSDetectorConstruction.hh <span style='color:#111;'> 4.60KB </span>","children":null,"spread":false},{"title":"CathodeHit.hh <span style='color:#111;'> 1.76KB </span>","children":null,"spread":false}],"spread":true},{"title":"PlasticScint_Fibre.in <span style='color:#111;'> 446B </span>","children":null,"spread":false},{"title":"Images","children":[{"title":"PlasticScint_No_Tef_aperture_45_3.png <span style='color:#111;'> 126.53KB </span>","children":null,"spread":false},{"title":"G4OpenGL_0.pdf <span style='color:#111;'> 27.45KB </span>","children":null,"spread":false},{"title":"PlasticScint_No_Tef_aperture_45_alpha.png <span style='color:#111;'> 314.46KB </span>","children":null,"spread":false},{"title":"PlasticScint_No_Tef_aperture_side.png <span style='color:#111;'> 20.57KB </span>","children":null,"spread":false},{"title":"scint_aperture_no_tef.png <span style='color:#111;'> 18.69KB </span>","children":null,"spread":false},{"title":"opticalphoton.png <span style='color:#111;'> 3.72KB </span>","children":null,"spread":false},{"title":"PlasticScint_No_Tef_aperture_side_2.png <span style='color:#111;'> 25.67KB </span>","children":null,"spread":false},{"title":"2Fibre_photon_fit.png <span style='color:#111;'> 13.02KB </span>","children":null,"spread":false},{"title":"PlasticScint_No_Tef_5mmaperture_10kPois_3-5_fit.pdf <span style='color:#111;'> 14.52KB </span>","children":null,"spread":false},{"title":"PlasticScint_No_Tef_aperture_side_3.png <span style='color:#111;'> 27.35KB </span>","children":null,"spread":false},{"title":"G4OpenGL_1.pdf <span style='color:#111;'> 20.97KB </span>","children":null,"spread":false}],"spread":false},{"title":"README.txt <span style='color:#111;'> 2.49KB </span>","children":null,"spread":false},{"title":"PlasticScint_Fibre.cc <span style='color:#111;'> 4.96KB </span>","children":null,"spread":false},{"title":"vis.mac <span style='color:#111;'> 2.06KB </span>","children":null,"spread":false},{"title":"optPhoton.mac <span style='color:#111;'> 184B </span>","children":null,"spread":false},{"title":"CMakeLists.txt <span style='color:#111;'> 2.48KB </span>","children":null,"spread":false}],"spread":false}],"spread":true}]

评论信息

免责申明

【只为小站】的资源来自网友分享,仅供学习研究,请务必在下载后24小时内给予删除,不得用于其他任何用途,否则后果自负。基于互联网的特殊性,【只为小站】 无法对用户传输的作品、信息、内容的权属或合法性、合规性、真实性、科学性、完整权、有效性等进行实质审查;无论 【只为小站】 经营者是否已进行审查,用户均应自行承担因其传输的作品、信息、内容而可能或已经产生的侵权或权属纠纷等法律责任。
本站所有资源不代表本站的观点或立场,基于网友分享,根据中国法律《信息网络传播权保护条例》第二十二条之规定,若资源存在侵权或相关问题请联系本站客服人员,zhiweidada#qq.com,请把#换成@,本站将给予最大的支持与配合,做到及时反馈和处理。关于更多版权及免责申明参见 版权及免责申明