Advanced Computational Tool for Understanding Quantum Materials

Ball and stick representation of the atoms in a crystal with a spin defect in the center, and the three-dimensional surfaces (red and blue) showing the excited states of the defect

Researchers at the University of Chicago’s Pritzker School of Molecular Engineering (PME), Argonne National Laboratory, and the University of Modena and Reggio Emilia have developed a new computational tool to describe how the atoms within quantum materials behave when they absorb and emit light. The tool will be released as part of the open-source software package WEST, developed within the Midwest Integrated Center for Computational Materials (MICCoM) by a team led by Prof. Marco Govoni, and it helps scientists better understand and engineer new materials for quantum technologies.

The post Advanced Computational Tool for Understanding Quantum Materials appeared first on HPCwire.

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