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Many‑Body Diffusion Monte Carlo Investigation of Oxygen Vacancies in Superconducting La₃Ni₂O₇ Phases

    Abdul Ghaffar | Oak Ridge National Laboratory
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Description

The dataset contains supplementary and raw data associated with the manuscript "The Role of Intrinsic Defects in the Structural Transition of Superconducting La3Ni2O7: A Many-Body DMC Prediction" (https://doi.org/10.1021/acs.chemmater.6c01607). This study investigates how oxygen vacancies and intrinsic defects influence the stability of high-pressure phases of La₃Ni₂O₇ using many-body diffusion Monte Carlo across the Amam, Fmmm, I4/mmm, and Cmmm structures. The results show that oxygen-vacancy formation significantly stabilizes the Fmmm phase at higher pressures, offering insight into the material’s phase-transition mechanisms and their relevance to superconducting behavior.

Funding Information

DOE Contract Number

DE-AC05-00OR22725; DE-AC02-06CH11357

Originating Research Organization

Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)

Other Contributing Organizations

Argonne Leadership Computing Facility (ALCF), Argonne National Laboratory (ANL), Argonne, IL (United States)

Sponsoring Organization

Office of Science (SC)

Project Identifier

MAT151

Related Works

Details

Release Date

September 16, 2026

Subject

MATERIALS SCIENCE

Keywords

Atomistic Materials Modeling, Nickelate, Correlated Oxides, Many-body diffusion Monte Carlo

Dataset

Dataset Type

ND Numeric Data

Software

Python; Nexus-QMCPACK

Other ID Number(s)

PSFMat_2

Cite This Dataset:

Ghaffar, A. (2026). Many‑Body Diffusion Monte Carlo Investigation of Oxygen Vacancies in Superconducting La₃Ni₂O₇ Phases. Oak Ridge National Laboratory. https://doi.org/10.13139/OLCF/3382294.

Acknowledgements

This research used resources of the Oak Ridge Leadership Computing Facility at the Oak Ridge National Laboratory, which is supported by the Advanced Scientific Computing Research programs in the Office of Science of the U.S. Department of Energy under Contract No. DE-AC05-00OR22725.