Published November 10, 2023 | Version 1.0.0
Dataset Open

Supplementary data for: "Unconventional superconductivity without doping: infinite-layer nickelates under pressure"

  • 1. ROR icon TU Wien
  • 2. ROR icon King's College London

Description

Supplementary data for "Unconventional superconductivity without doping: infinite-layer nickelates under pressure"

Context and methodology

  • This repository contains supplementary data from the associated research work. It serves the purpose of aiding interested and informed readers to reproduce the results of the associated paper and verify their validity.
  • The research area in which this dataset is created is that of condensed matter, strongly correlated electron systems, superconductivity
  • This dataset was created manually by collecting and ordering the relevant data. The README file was written by Simone Di Cataldo

Technical details

  • The dataset contains a README file which explains in detail the content of the dataset itself. The general structure is the following: the dataset is divided into subfolders for the general topic (DFT calculations, DMFT calculations for 1 band, DMFT calculations for 10 bands). Each folder then contains further subfolders related to physical quantities (i.e. different pressures, different dopings, different temperatures). Consult the README file for detailed explanation of the naming conventions.
  • The data contained is of mixed type. Most of it are input and output files of softwares that can be read directly with text editors. In addition, hdf5 files from DMFT calculations containing Green's functions, self-energies and two-particle vertexes require dedicated software, e.g. python code with h5py.

Files

Files (68.1 GiB)

Name Size
md5:396fc0fcaaef35c85cc0d02b8de8d880
68.1 GiB Download

Additional details

Funding

Electronic structure and superconductivity in nickelates I5398
FWF Austrian Science Fund
Quantum phase transitions and collective modes I5868
FWF Austrian Science Fund
Vertex corrections to the conductivity P36213
FWF Austrian Science Fund