论文标题

Exascale时代的电子结构代码的路线图

Roadmap on Electronic Structure Codes in the Exascale Era

论文作者

Gavini, Vikram, Baroni, Stefano, Blum, Volker, Bowler, David R., Buccheri, Alexander, Chelikowsky, James R., Das, Sambit, Dawson, William, Delugas, Pietro, Dogan, Mehmet, Draxl, Claudia, Galli, Giulia, Genovese, Luigi, Giannozzi, Paolo, Giantomassi, Matteo, Gonze, Xavier, Govoni, Marco, Gulans, Andris, Gygi, François, Herbert, John M., Kokott, Sebastian, Kühne, Thomas D., Liou, Kai-Hsin, Miyazaki, Tsuyoshi, Motamarri, Phani, Nakata, Ayako, Pask, John E., Plessl, Christian, Ratcliff, Laura E., Richard, Ryan M., Rossi, Mariana, Schade, Robert, Scheffler, Matthias, Schütt, Ole, Suryanarayana, Phanish, Torrent, Marc, Truflandier, Lionel, Windus, Theresa L., Xu, Qimen, Yu, Victor W. -Z., Perez, Danny

论文摘要

电子结构计算对各种分子和固态系统的物理和化学特性提供了许多重要见解。它们对各个领域的重要性,包括材料科学,化学科学,计算化学和设备物理学,都受到专门用于这些计算的可用公共超级计算资源的大量。当我们进入Exascale时代时,令人兴奋的新机会来增加模拟数字,大小和准确性。但是,为了实现这些承诺,电子结构软件开发人员的社区将首先必须应对有效利用新建筑的许多挑战,这些挑战将严重依赖于大规模的并行性和硬件加速器。该路线图概述了电子结构计算的最新技术以及社区追求的各种新方向。它涵盖了14个电子结构代码,介绍了其当前状态,未来五年内的发展优先级,以及他们的计划应对挑战并利用Exascale Computing出现的机会。

Electronic structure calculations have been instrumental in providing many important insights into a range of physical and chemical properties of various molecular and solid-state systems. Their importance to various fields, including materials science, chemical sciences, computational chemistry and device physics, is underscored by the large fraction of available public supercomputing resources devoted to these calculations. As we enter the exascale era, exciting new opportunities to increase simulation numbers, sizes, and accuracies present themselves. In order to realize these promises, the community of electronic structure software developers will however first have to tackle a number of challenges pertaining to the efficient use of new architectures that will rely heavily on massive parallelism and hardware accelerators. This roadmap provides a broad overview of the state-of-the-art in electronic structure calculations and of the various new directions being pursued by the community. It covers 14 electronic structure codes, presenting their current status, their development priorities over the next five years, and their plans towards tackling the challenges and leveraging the opportunities presented by the advent of exascale computing.

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