Computational Engineering, Finance, and Science · Computer Science
Tackling Exascale Software Challenges in Molecular Dynamics Simulations with GROMACS
Páll Szilárd, Mark James Abraham, Carsten Kutzner, Berk Hess +1
2015-06-03
Distributed, Parallel, and Cluster Computing · Computer Science
Best bang for your buck: GPU nodes for GROMACS biomolecular simulations
Carsten Kutzner, Szilárd Páll, Martin Fechner, Ansgar Esztermann +2
2019-03-14
Computational Physics · Physics
Heterogeneous Parallelization and Acceleration of Molecular Dynamics Simulations in GROMACS
Szilárd Páll, Artem Zhmurov, Paul Bauer, Mark Abraham +4
2020-10-28
Distributed, Parallel, and Cluster Computing · Computer Science
Making Room for AI: Multi-GPU Molecular Dynamics with Deep Potentials in GROMACS
Luca Pennati, Andong Hu, Ivy Peng, Lukas Müllender +1
2026-04-09
Distributed, Parallel, and Cluster Computing · Computer Science
GROMACS on AMD GPU-Based HPC Platforms: Using SYCL for Performance and Portability
Andrey Alekseenko, Szilárd Páll, Erik Lindahl
2025-09-26
Soft Condensed Matter · Physics
Long-range interactions & parallel scalability in molecular simulations
Michael Patra, Marja T. Hyvonen, Emma Falck, Mohsen Sabouri-Ghomi +2
2007-05-23
Distributed, Parallel, and Cluster Computing · Computer Science
Performance Analysis Cluster and GPU Computing Environment on Molecular Dynamic Simulation of BRV-1 and REM2 with GROMACS
Heru Suhartanto, Arry Yanuar, Ari Wibisono
2012-10-17
Distributed, Parallel, and Cluster Computing · Computer Science
More Bang for Your Buck: Improved use of GPU Nodes for GROMACS 2018
Carsten Kutzner, Szilárd Páll, Martin Fechner, Ansgar Esztermann +2
2022-05-16
Distributed, Parallel, and Cluster Computing · Computer Science
On the Feasibility of FPGA Acceleration of Molecular Dynamics Simulations
Michael Schaffner, Luca Benini
2018-08-14
Distributed, Parallel, and Cluster Computing · Computer Science
GROMACS in the cloud: A global supercomputer to speed up alchemical drug design
Carsten Kutzner, Christian Kniep, Austin Cherian, Ludvig Nordstrom +3
2022-05-16
Computational Engineering, Finance, and Science · Computer Science
Performance Analysis on Molecular Dynamics Simulation of Protein Using GROMACS
A. D. Astuti, A. B. Mutiara
2009-12-07
Distributed, Parallel, and Cluster Computing · Computer Science
A Comparison of the Performance of the Molecular Dynamics Simulation Package GROMACS Implemented in the SYCL and CUDA Programming Models
L. Apanasevich, Yogesh Kale, Himanshu Sharma, Ana Marija Sokovic
2024-06-18
Distributed, Parallel, and Cluster Computing · Computer Science
Malleable Molecular Dynamics Simulations with GROMACS and DMR
Petter Sandås, Sergio Iserte, Íñigo Aréjula-Aísa, Berk Hess +1
2026-05-15
Computational Physics · Physics
Molecular Dynamics Simulation of Macromolecules Using Graphics Processing Unit
Ji Xu, Ying Ren, Wei Ge, Xiang Yu +2
2010-01-22
Distributed, Parallel, and Cluster Computing · Computer Science
Computational performance of a parallelized high-order spectral and mortar element toolbox
Roland Bouffanais, Vincent Keller, Ralf Gruber, Michel O. Deville
2007-09-10
Distributed, Parallel, and Cluster Computing · Computer Science
CROFT: A scalable three-dimensional parallel Fast Fourier Transform (FFT) implementation for High Performance Clusters
Vivek Gavane, Supriya Prabhugawankar, Shivam Garg, Archana Achalere +1
2020-08-28
Instrumentation and Methods for Astrophysics · Physics
Implementation and performance of FDPS: A Framework Developing Parallel Particle Simulation Codes
Masaki Iwasawa, Ataru Tanikawa, Natsuki Hosono, Keigo Nitadori +2
2016-06-15
Computational Physics · Physics
Improving the Scaling and Performance of Multiple Time Stepping based Molecular Dynamics with Hybrid Density Functionals
Sagarmoy Mandal, Ritama Kar, Tobias Kloeffel, Bernd Meyer +1
2021-10-18
Computational Physics · Physics
Revisiting FPGA Acceleration of Molecular Dynamics Simulation with Dynamic Data Flow Behavior in High-Level Synthesis
Jason Cong, Zhenman Fang, Hassan Kianinejad, Peng Wei
2016-11-15
Computational Engineering, Finance, and Science · Computer Science
The Multiple Time-Stepping Method for 3-Body Interactions in High Performance Molecular Dynamics Simulations
David Martin, Samuel James Newcome, Markus Mühlhäußer, Manish Kumar Mishra +2
2025-07-16
Distributed, Parallel, and Cluster Computing · Computer Science
Enabling AI Deep Potentials for Ab Initio-quality Molecular Dynamics Simulations in GROMACS
Andong Hu, Luca Pennati, Stefano Markidis, Ivy Peng
2026-02-03