Collaborative Research: SI2-CHE: Development and Deployment of Chemical Software for Advanced Potential Energy Surfaces

合作研究:SI2-CHE:先进势能表面化学软件的开发和部署

基本信息

  • 批准号:
    1265731
  • 负责人:
  • 金额:
    $ 53.15万
  • 依托单位:
  • 依托单位国家:
    美国
  • 项目类别:
    Standard Grant
  • 财政年份:
    2013
  • 资助国家:
    美国
  • 起止时间:
    2013-05-15 至 2016-04-30
  • 项目状态:
    已结题

项目摘要

An international team consisting of Teresa Head-Gordon and Martin Head-Gordon (University of California, Berkeley), Paul Nerenberg (Claremont McKenna College), David Case (Rutgers University), Jay Ponder (Washington University), Mark Tuckerman (New York University) with their UK collaborators: Lorna Smith and Neil Chue Hong (University of Edinburgh), Chris-Kriton Skylaris and Jonathan W. Essex (University of Southampton), Ilian Todorov (Daresbury Laboratory), Mario Antonioletti (EPCC) are are supported through the SI2-CHE program to develop and deploy robust and sustainable software for advanced potential energy surfaces. The greater accuracy introduced by improvements in the new generation of potential energy surfaces opens up several challenges in their manifestation as algorithms and software on current or emergent hardware platforms that in turn limits their wide adoption by the computational chemistry community. The research team is overcoming these obstacles via multiple but integrated directions: (1) to optimally implement advanced potential energy surfaces across multi-core and GPU enabled systems, (2) to develop a hierarchy of advanced polarizable models that alter the tradeoff between accuracy and computational speed,(3) to create new multiple time stepping methods; (4) to write a Quantum Mechanics/Molecular Mechanics (QM/MM ) application programing interface (API) that fully supports mutual polarization, (5) to adopt software best practices to ensure growth of a self-sustaining community and (6) to provide exemplar calculations with the new software in several emerging application areas.Molecular simulation and quantum chemistry software is an integral part of chemistry and chemical biology, and has been broadly adopted by academic researchers and industry scientists. Next generation scientific breakthroughs that utilize chemical software will be enabled by the deployment of state of the art theoretical models and algorithms that are translated into a sustainable software framework rapidly implemented on emergent high performance computing platforms. Potential energy surfaces describe the interactions between atoms. Advanced and highly accurate potential energy surfaces encounter software-related obstacles that inhibit their application to grand challenge chemistry problems. This UK and US consortium, representing a broad cross section of the computational chemistry software community, is working to directly tackle these obstacles. This US and UK collaboration between universities and High Performance Computing centers works to endure that chemical software investments made in advanced potential energy surface models has a long term payoff in community sustainability and the training of the next generation of scientists. Outreach and training workshops are organized around the emergence of the advanced potential energy software including an introductory molecular simulation software boot camp for undergraduate students.The US based investigators are supported by the CHE and ACI divisions within NSF; the UK based investigators are supported by the EPSRC.
由Teresa Head-Gordon和Martin Head-Gordon(加州大学伯克利分校)、Paul Nerenberg(克莱蒙特麦肯纳学院)、David Case(罗格斯大学)、Jay Ponder(华盛顿大学)、Mark Tuckerman(纽约大学)及其英国合作者组成的国际团队:Lorna Smith和Neil Chue Hong(爱丁堡大学),Chris-Kriton Skylaris和Jonathan W. Essex(南安普顿大学),Ilian Todorov (Daresbury实验室),Mario Antonioletti (EPCC)通过SI2-CHE项目为先进的潜在能量表面开发和部署强大且可持续的软件提供支持。新一代势能表面的改进带来了更高的精度,这在当前或新兴硬件平台上的算法和软件表现方面带来了一些挑战,这反过来又限制了它们在计算化学社区的广泛采用。研究团队正在通过多个但综合的方向克服这些障碍:(1)在多核和GPU支持的系统上优化实现先进的势能面,(2)开发一种先进的极化模型层次结构,改变精度和计算速度之间的权衡,(3)创建新的多时间步进方法;(4)编写一个完全支持互极化的量子力学/分子力学(QM/MM)应用程序编程接口(API);(5)采用软件最佳实践,以确保自我维持社区的增长;(6)在几个新兴应用领域提供新软件的范例计算。分子模拟和量子化学软件是化学和化学生物学的重要组成部分,已被学术研究人员和工业科学家广泛采用。利用化学软件的下一代科学突破将通过部署最先进的理论模型和算法来实现,这些理论模型和算法被转化为可持续的软件框架,在新兴的高性能计算平台上迅速实施。势能面描述了原子间的相互作用。先进和高精度的势能表面遇到了与软件相关的障碍,这些障碍阻碍了它们在重大挑战化学问题中的应用。这个英国和美国的联盟,代表了计算化学软件社区的一个广泛的横截面,正在努力直接解决这些障碍。美国和英国的大学和高性能计算中心之间的合作是为了确保在先进的势能表面模型上进行的化学软件投资在社区可持续性和下一代科学家的培训方面具有长期回报。围绕先进势能软件的出现,组织了外展和培训研讨会,包括为本科生提供的入门分子模拟软件新兵训练营。美国的研究人员得到NSF内部CHE和ACI部门的支持;英国的研究人员得到了EPSRC的支持。

项目成果

期刊论文数量(4)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)

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Teresa Head-Gordon其他文献

Amyloid-Beta Heterogeneous Conformational Ensembles: Differences Between the 40- and 42-Residue Peptides and Implications for Dimer Polyamorphism
  • DOI:
    10.1016/j.bpj.2011.11.3437
  • 发表时间:
    2012-01-31
  • 期刊:
  • 影响因子:
  • 作者:
    K. Aurelia Ball;Aaron H. Phillips;Nicolas L. Fawzi;David E. Wemmer;Teresa Head-Gordon
  • 通讯作者:
    Teresa Head-Gordon
The Combined Force Field-Sampling Problem in Simulation of Intrinsically Disordered Peptides
  • DOI:
    10.1016/j.bpj.2017.11.3641
  • 发表时间:
    2018-02-02
  • 期刊:
  • 影响因子:
  • 作者:
    James Lincoff;Sukanya Sasmal;Teresa Head-Gordon
  • 通讯作者:
    Teresa Head-Gordon
A Coarse Grained Molecular Dynamics Study of Amyloid Beta Transmembrane Pores
  • DOI:
    10.1016/j.bpj.2011.11.1331
  • 发表时间:
    2012-01-31
  • 期刊:
  • 影响因子:
  • 作者:
    Shachi Katira;Teresa Head-Gordon
  • 通讯作者:
    Teresa Head-Gordon
Biological insights from integrative modeling of intrinsically disordered protein systems
来自内在无序蛋白质系统综合建模的生物学见解
  • DOI:
    10.1016/j.sbi.2025.103063
  • 发表时间:
    2025-08-01
  • 期刊:
  • 影响因子:
    7.000
  • 作者:
    Zi Hao Liu;Maria Tsanai;Oufan Zhang;Teresa Head-Gordon;Julie D. Forman-Kay
  • 通讯作者:
    Julie D. Forman-Kay
Evaluation and Improvement of the Amber ff99SB Force Field with an Advanced Water Model
  • DOI:
    10.1016/j.bpj.2010.12.1900
  • 发表时间:
    2011-02-02
  • 期刊:
  • 影响因子:
  • 作者:
    Paul S. Nerenberg;Clare So;Ajay Tripathy;Teresa Head-Gordon
  • 通讯作者:
    Teresa Head-Gordon

Teresa Head-Gordon的其他文献

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{{ truncateString('Teresa Head-Gordon', 18)}}的其他基金

Reactive Force Field Design Guided by Energy Decomposition Analysis
能量分解分析引导的反作用力场设计
  • 批准号:
    2313791
  • 财政年份:
    2023
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Continuing Grant
Reactive and Non-Reactive Force Field Design Guided by Advances in Energy Decomposition Analysis
以能量分解分析进展为指导的反应性和非反应性力场设计
  • 批准号:
    1955643
  • 财政年份:
    2020
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Continuing Grant
From Theory of Energy Decomposition Analysis to Rational Force Field Design
从能量分解分析理论到合理力场设计
  • 批准号:
    1665315
  • 财政年份:
    2017
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Continuing Grant
Collaborative Research: S2I2: Conceptualization of a Center for Biomolecular Simulation
合作研究:S2I2:生物分子模拟中心的概念化
  • 批准号:
    1331445
  • 财政年份:
    2014
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Standard Grant
Many-Body Expansion of Direct and Mutual Polarization Models
直接极化和互极化模型的多体扩展
  • 批准号:
    1363320
  • 财政年份:
    2014
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Continuing Grant
Conference: Undergraduate Opportunities at the UC System Wide Bioengineering Symposium, June 21 - June 23, 2012, Berkeley, CA
会议:加州大学系统生物工程研讨会本科生机会,2012 年 6 月 21 日至 6 月 23 日,加利福尼亚州伯克利
  • 批准号:
    1243416
  • 财政年份:
    2012
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Standard Grant
Potential Energy Surfaces of Various Accuracy for Biomolecular Simulations
用于生物分子模拟的各种精度的势能面
  • 批准号:
    1147444
  • 财政年份:
    2011
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Standard Grant
Collaborative Research: Cyberinfrastructure for Next Generation Biomolecular Modeling
合作研究:下一代生物分子建模的网络基础设施
  • 批准号:
    0535710
  • 财政年份:
    2005
  • 资助金额:
    $ 53.15万
  • 项目类别:
    Continuing Grant

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