RepEx: A Flexible Framework for Scalable Replica Exchange Molecular Dynamics Simulations
Antons Treikalis, Andre Merzky, Haoyuan Chen, Tai-Sung Lee, Darrin M., York, Shantenu Jha

TL;DR
RepEx is a flexible, scalable framework that enables diverse replica exchange molecular dynamics simulations across various platforms without being tied to specific simulation codes.
Contribution
It introduces a novel framework supporting multiple RE schemes and execution modes, decoupling RE algorithms from molecular simulation software for enhanced flexibility and scalability.
Findings
Supports any RE scheme independent of simulation code
Enables execution of various exchange schemes and replica counts
Achieves scalability over tens of thousands of replicas
Abstract
Replica Exchange (RE) simulations have emerged as an important algorithmic tool for the molecular sciences. RE simulations involve the concurrent execution of independent simulations which infrequently interact and exchange information. The next set of simulation parameters are based upon the outcome of the exchanges. Typically RE functionality is integrated into the molecular simulation software package. A primary motivation of the tight integration of RE functionality with simulation codes has been performance. This is limiting at multiple levels. First, advances in the RE methodology are tied to the molecular simulation code. Consequently these advances remain confined to the molecular simulation code for which they were developed. Second, it is difficult to extend or experiment with novel RE algorithms, since expertise in the molecular simulation code is typically required. In…
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