12 research outputs found
AtomSim: web-deployed atomistic dynamics simulator
AtomSim, a collection of interfaces for computational crystallography simulations, has been developed. It uses forcefield-based dynamics through physics engines such as the General Utility Lattice Program, and can be integrated into larger computational frameworks such as the Virtual Neutron Facility for processing its dynamics into scattering functions, dynamical functions etc. It is also available as a Google App Engine-hosted web-deployed interface. Examples of a quartz molecular dynamics run and a hafnium dioxide phonon calculation are presented
A web-deployed interface for performing ab initio molecular dynamics, optimization, and electronic structure in Fireball
Fireball is an ab initio technique for fast local orbital simulations of nanotechnological, solid state, and
biological systems. We have implemented a convenient interface for new users and software architects
in the platform-independent Java language to access Fireball’s unique and powerful capabilities. The
graphical user interface can be run directly from a web server or from within a larger framework such as
the Computational Science and Engineering Online (CSE-Online) environment or the Distributed Analysis
of Neutron Scattering Experiments (DANSE) framework. We demonstrate its use for high-throughput
electronic structure calculations and a multi-100 atom quantum molecular dynamics (MD) simulation