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Combined shared and distributed memory ab-initio computations of molecular-hydrogen systems in the correlated state : process pool solution and two-level parallelism

机译:相关状态下分子氢系统的组合共享和分布式内存从头计算:过程池解和两级并行

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摘要

An efficient computational scheme devised for investigations of ground state properties of the electronically correlated systems is presented. As an example, (H2)n chain is considered with the long-range electron–electron interactions taken into account. The implemented procedure covers: (i) single-particle Wannier wave-function basis construction in the correlated state, (ii) microscopic parameters calculation, and (iii) ground state energy optimization. The optimization loop is based on highly effective process-pool solution — specific root-workers approach. The hierarchical, two-level parallelism was applied: both shared (by use of Open Multi-Processing) and distributed (by use of Message Passing Interface) memory models were utilized. We discuss in detail the feature that such approach results in a substantial increase of the calculation speed reaching factor of 300 for the fully parallelized solution. The scheme elaborated in detail reflects the situation in which the most demanding task is the single-particle basis optimization.
机译:提出了一种有效的计算方案,旨在研究电子相关系统的基态特性。例如,考虑到(H2)n链的长距离电子-电子相互作用。实施的程序包括:(i)相关状态下的单粒子Wannier波函数基础构造;(ii)微观参数计算;以及(iii)基态能量优化。优化循环基于高效的流程池解决方案-特定的root-workers方法。应用了分层的两级并行性:共享(通过使用Open Multi-Processing)和分布式(通过使用消息传递接口)都使用了内存模型。我们将详细讨论以下特征:对于完全并行化的解决方案,这种方法会导致计算速度的提高幅度达到300。详细阐述的方案反映了最苛刻的任务是单粒子基础优化的情况。

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