SI2-SSI: Collaborative Research: Jet Energy-Loss Tomography with a Statistically and Computationally Advanced Program Envelope (JETSCAPE)
SI2-SSI: Collaborative Research: Jet Energy-Loss Tomography with a Statistically and Computationally Advanced Program Envelope (JETSCAPE)
批准号:
1550300
负责人:
Abhijit Majumder
金额:
$193.69万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-07-01 至 2023-06-30
中文摘要
宇宙大爆炸后的几微秒内,宇宙充满了一种叫做夸克-胶子等离子体的极热流体。随着宇宙的膨胀,等离子体冷却并凝聚成我们周围普通物质的基本组成部分:质子、中子和原子核。这种液体的液滴只存在于2万亿开尔文以上的温度下,如今在布鲁克海文国家实验室和欧洲核子研究中心的实验室里,通过高能重离子的碰撞来产生和研究。研究夸克-胶子等离子体的一个关键方法是在碰撞中产生高能夸克和胶子,它们与热等离子体相互作用,并以实验测量的粒子“喷流”形式出现。这些喷射为研究等离子体的内部结构提供了强大的工具,类似于医学成像中的断层扫描。然而,喷气测量的解释需要复杂的数值模拟和模拟,理论计算与实验数据的比较需要先进的统计工具。JETSCAPE协作项目是一个由物理学家、计算机科学家和统计学家组成的跨学科团队,将开发一个全面的软件框架,该框架将提供一个系统的、严格的方法来应对这一挑战。培训项目、研讨会、暑期学校和mooc将传播修改和维持这一框架所需的专业知识。JETSCAPE协作将开发一种可扩展的、可移植的开源软件包,以取代各种现有的代码。模块化集成软件框架将由相互作用的生成器组成,用于模拟(i)入射核的波函数,(ii)热等离子体的粘性流体动力学演化,以及(iii)等离子体中射流的输运和修改。集成的先进统计分析工具将为非专业用户提供定量方法,通过与当前完整的实验数据集进行比较,验证喷气机改装的新理论描述。为了提高这项计算密集型任务的效率,该合作将开发可训练的模拟器,该模拟器可以通过在完整模型运行之间的插值来准确预测实验观察结果,并使用图形处理单元(gpu)等加速器进行流体动力学模拟和射流修改。该合作将创建一个用户友好的信封,允许持续修改,更新和改进其每个组件的框架。这项工作将为其他涉及复杂动态建模和大型数据集比较的领域提供模板。这将为高精度提取具有可量化不确定性的夸克-胶子等离子体的内部结构开辟一个新时代。该项目推进了国家战略计算计划(NSCI)的目标,旨在维持和加强美国在高性能计算(HPC)研究、开发和部署方面的科学、技术和经济领导地位。该项目由计算机与信息科学与工程理事会的先进网络基础设施司以及数学与物理科学理事会的物理司和数学科学司提供支持。
英文摘要
Microseconds after the Big Bang, the universe was filled with an extremely hot fluid called the Quark-Gluon Plasma. As the universe expanded, this plasma cooled and condensed into the building blocks of ordinary matter around us: protons, neutrons, and atomic nuclei. Droplets of this fluid, which exists only at temperatures above 2 trillion Kelvin, are generated and studied in the laboratory today using collisions of high-energy heavy ions at Brookhaven National Laboratory and CERN. A key method to study the Quark-Gluon Plasma is the generation of high-energy quarks and gluons in the collision, which interact with the hot plasma and emerge as "jets" of particles that are measured by experiments. These jets provide powerful tools to study the internal structure of the plasma, analogous to tomography in medical imaging. However, interpretation of jet measurements requires sophisticated numerical modeling and simulation, and comparison of theory calculations with experimental data demands advanced statistical tools. The JETSCAPE Collaboration, an interdisciplinary team of physicists, computer scientists, and statisticians, will develop a comprehensive software framework that will provide a systematic, rigorous approach to meet this challenge. Training programs, workshops, summer schools and MOOCs, will disseminate the expertise needed to modify and maintain this framework.The JETSCAPE Collaboration will develop a scalable and portable open source software package to replace a variety of existing codes. The modular integrated software framework will consist of interacting generators to simulate (i) wave functions of the incoming nuclei, (ii) viscous fluid dynamical evolution of the hot plasma, and (iii) transport and modification of jets in the plasma. Integrated advanced statistical analysis tools will provide non-expert users with quantitative methods to validate novel theoretical descriptions of jet modification, by comparison with the complete set of current experimental data. To improve the efficiency of this computationally intensive task, the collaboration will develop trainable emulators that can accurately predict experimental observables by interpolation between full model runs, and employ accelerators such as Graphics Processing Units (GPUs) for both the fluid dynamical simulations and the modification of jets. The collaboration will create this framework with a user-friendly envelope that allows for continuous modifications, updates and improvements of each of its components. The effort will serve as a template for other fields that involve complex dynamical modeling and comparison with large data sets. It will open a new era for high-precision extraction of the internal structure of the Quark-Gluon Plasma with quantifiable uncertainties. This project advances the objectives of the National Strategic Computing Initiative (NSCI), an effort aimed at sustaining and enhancing the U.S. scientific, technological, and economic leadership position in High-Performance Computing (HPC) research, development, and deployment. This project is supported by the Division of Advanced Cyberinfrastructure in the Directorate for Computer & Information Science & Engineering and the Physics Division and the Division of Mathematical Sciences in the Directorate of Mathematical and Physical Sciences.
期刊论文(14)
专著(0)
科研奖励(0)
会议论文
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DOI:
10.1016/j.nuclphysa.2020.121934
发表时间:
2021
期刊:
Nuclear Physics
影响因子:
--
作者:
[Wei Chen;S. Cao;T. Luo;L. Pang;Xin-Nian Wang]
通讯作者:
Wei Chen;S. Cao;T. Luo;L. Pang;Xin-Nian Wang
DOI:
10.1016/j.nuclphysa.2020.121920
发表时间:
2020-02
期刊:
arXiv: Nuclear Theory
影响因子:
--
作者:
[Y. Tachibana;A. Angerami;S. Bass;S. Cao;Y. Chen;J. Coleman;L. Cunqueiro;T. Dai;L. Du;R. Ehlers;H. Elfner;D. Everett;W. Fan;R. Fries;C. Gale;Y. He;Matthew Heffernan;U. Heinz;B. Jacak;P. Jacobs;S. Jeon;K. Kauder;W. Ke;E. Khalaj;M. Kordell;A. Kumar;T. Luo;M. Luzum;A. Majumder;M. McNelis;J. Mulligan;C. Nattrass;D. Oliinychenko;D. Pablos;L. Pang;C. Park;J. Paquet;J. Putschke;G. Roland;B. Schenke;L. Schwiebert;C. Shen;A. Silva;C. Sirimanna;R. Soltz;G. Vujanovic;X. Wang;R. Wolpert;Y. Xu;Z. Yang]
通讯作者:
Y. Tachibana;A. Angerami;S. Bass;S. Cao;Y. Chen;J. Coleman;L. Cunqueiro;T. Dai;L. Du;R. Ehlers;H. Elfner;D. Everett;W. Fan;R. Fries;C. Gale;Y. He;Matthew Heffernan;U. Heinz;B. Jacak;P. Jacobs;S. Jeon;K. Kauder;W. Ke;E. Khalaj;M. Kordell;A. Kumar;T. Luo;M. Luzum;A. Majumder;M. McNelis;J. Mulligan;C. Nattrass;D. Oliinychenko;D. Pablos;L. Pang;C. Park;J. Paquet;J. Putschke;G. Roland;B. Schenke;L. Schwiebert;C. Shen;A. Silva;C. Sirimanna;R. Soltz;G. Vujanovic;X. Wang;R. Wolpert;Y. Xu;Z. Yang
DOI:
10.1103/physrevd.106.034505
发表时间:
2022-08
期刊:
Physical Review D
影响因子:
5
作者:
[Amit Kumar;A. Majumder;J. Weber]
通讯作者:
Amit Kumar;A. Majumder;J. Weber
DOI:
10.1016/j.nuclphysa.2020.121903
发表时间:
2020-04
期刊:
arXiv: Nuclear Theory
影响因子:
--
作者:
[C. A. Prado;Wen-Jing Xing;S. Cao;G. Qin;Xin-Nian Wang]
通讯作者:
C. A. Prado;Wen-Jing Xing;S. Cao;G. Qin;Xin-Nian Wang
DOI:
10.1103/physrevc.107.034911
发表时间:
2022-04
期刊:
Physical Review C
影响因子:
3.1
作者:
[A. Kumar;Y. Tachibana;C. Sirimanna;G. Vujanovic;S. Cao;A. Majumder;Y. Chen;L. Du;R. Ehlers;D. Everett;W. Fan;Y. He;J. Mulligan;C. Park;A. Angerami;R. Arora;S. Bass;T. Dai;H. Elfner;R. Fries;C. Gale;F. Garza;Matthew Heffernan;U. Heinz;B. Jacak;P. Jacobs;S. Jeon;K. Kauder;L. Kasper;W. Ke;M. Kelsey;B. Kim;M. Kordell;J. Latessa;Y. Lee;D. Liyanage;A. Lopez;M. Luzum;S. Mak;A. Mankolli;C. Martin;Mehryar Habibi Roudkenar;T. Mengel;C. Nattrass;D. Oliinychenko;J. Paquet;J. Putschke;G. Roland;B. Schenke;L. Schwiebert;A. Sengupta;Chen Shen;A. Silva;D. Soeder;R. Soltz;J. Staudenmaier;M. Strickland;J. Velkovska;X.-N. Wang;R. Wolpert]
通讯作者:
A. Kumar;Y. Tachibana;C. Sirimanna;G. Vujanovic;S. Cao;A. Majumder;Y. Chen;L. Du;R. Ehlers;D. Everett;W. Fan;Y. He;J. Mulligan;C. Park;A. Angerami;R. Arora;S. Bass;T. Dai;H. Elfner;R. Fries;C. Gale;F. Garza;Matthew Heffernan;U. Heinz;B. Jacak;P. Jacobs;S. Jeon;K. Kauder;L. Kasper;W. Ke;M. Kelsey;B. Kim;M. Kordell;J. Latessa;Y. Lee;D. Liyanage;A. Lopez;M. Luzum;S. Mak;A. Mankolli;C. Martin;Mehryar Habibi Roudkenar;T. Mengel;C. Nattrass;D. Oliinychenko;J. Paquet;J. Putschke;G. Roland;B. Schenke;L. Schwiebert;A. Sengupta;Chen Shen;A. Silva;D. Soeder;R. Soltz;J. Staudenmaier;M. Strickland;J. Velkovska;X.-N. Wang;R. Wolpert
共 12 条
CSSI: Frameworks: X-Ion Collisions with a Statistically and Computationally Advanced Program Envelope (X-SCAPE)
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批准号:2004571
-
项目类别:Standard Grant
-
资助金额:$404.88万
-
财政年份:2020
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负责人:Abhijit Majumder
-
依托单位:
Jets as Probes of Ultra-Relativistic Heavy-Ion Collisions
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批准号:1207918
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项目类别:Continuing Grant
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资助金额:$32.9万
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财政年份:2012
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负责人:Abhijit Majumder
-
依托单位:
国内基金
海外基金
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