mfdn-transitions
Postprocessing code for MFDn wave functions
Science Score: 52.0%
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✓CITATION.cff file
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Organization nd-nuclear-theory has institutional domain (nuclear-theory.nd.edu) -
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○Scientific vocabulary similarity
Low similarity (2.5%) to scientific vocabulary
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Repository
Postprocessing code for MFDn wave functions
Basic Info
- Host: GitHub
- Owner: nd-nuclear-theory
- License: other
- Language: Fortran
- Default Branch: master
- Size: 308 KB
Statistics
- Stars: 0
- Watchers: 0
- Forks: 0
- Open Issues: 0
- Releases: 0
Created 9 months ago
· Last pushed 8 months ago
Metadata Files
Readme
License
Citation
README.md
mfdn-transitions
A postprocessing code for wave functions generated in nuclear no-core configuration interaction calculations with MFDn. It may be used to evaluate one-body densities or the matrix element of a two-body operator between given initial and final states.
Owner
- Name: University of Notre Dame Nuclear Theory
- Login: nd-nuclear-theory
- Kind: organization
- Website: http://nuclear-theory.nd.edu
- Repositories: 20
- Profile: https://github.com/nd-nuclear-theory
Citation (CITATION.cff)
cff-version: 1.2.0
title: mfdn-transitions
message: >-
If you use this software, please cite it using these metadata.
type: software
authors:
- given-names: "Patrick James"
family-names: Fasano
email: pfasano@nd.edu
affiliation: University of Notre Dame
orcid: 'https://orcid.org/0000-0003-2457-4976'
- given-names: Pieter
family-names: Maris
email: pmaris@iastate.edu
affiliation: Iowa State University
orcid: 'https://orcid.org/0000-0002-1351-7098'
repository-code: 'https://github.com/nd-nuclear-theory/mfdn-transitions.git'
license: BSD-3-Clause
abstract: >-
A postprocessing code for wave functions generated in nuclear no-core
configuration interaction calculations with MFDn. It may be used to
evaluate one-body densities or the matrix element of a two-body operator
between given initial and final states.
references:
- authors:
- given-names: "Patrick James"
family-names: Fasano
title: "Ab initio nuclear structure and electroweak properties from chiral effective field theory"
type: thesis
thesis-type: "Ph.D. thesis"
institution:
name: "University of Notre Dame"
year: 2023
doi: 10.7274/w9504x5568h
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