Numerical Effective Field Theory for Quantum Materials
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Updated
Nov 2, 2022 - Julia
Numerical Effective Field Theory for Quantum Materials
FeynOnium is a FeynCalc add-on that facilitates calculations in Nonrelativistic QCD (NRQCD) and potential Nonrelativistic QCD (pNRQCD)
Toolbox to study quantum many-body problem at the treelevel
Smooth inference for reinterpretation studies
Nuclear physics at low renormalization group resolution.
Tree-level completions of LNV operators for neutrino-mass model building
Interfacing NumericalEFT with TRIQS and other external packages.
mini exact diagonalization code for many-body Green's functions of atoms
Implications of Z' and LQ with imaginary couplings to B decays and Bs mixing Companion code to arXiv:1805.03636
Mathematica / FeynRules package for deriving SMEFT Feynman rules
Code accompanying https://arxiv.org/abs/2402.13165 and https://arxiv.org/abs/2508.17558
Global likelihood study with the SMEFT operators Olq1 and Qlq3
FeynRules and UFO models for vSMEFT
Python toolkit for CEvNS calculations in an effective field theory framework, associated with arXiv:2409.04703 and arXiv:2601.19883. Includes event-rate calculations, detector responses, EFT matching, and statistical analyses for COHERENT.
Framework + runtime CLI para OCC/ILSC: un “compilador” operacional que ejecuta módulos reproducibles (inputs YAML/JSON) y emite veredictos PASS/FAIL con witnesses/certificados auditables. Incluye el compendio canónico en PDF y el CLI para correr demos mínimos (MRD) de forma determinista y trazable.
# LQG-ANEC Framework (research-stage)
Modeling Latent Valency Mechanics and Induced Conformational Phase Transitions in Field-Driven Molecular Landscapes.
Python scripts to derive a minimal operator basis for lattice gauge theory.
Non-Injectivity as a Structural Necessity of Genuine Emergence
PTTEM: LISA SNR pipeline, code and figures for SGWB from dark-matter phase transitions.
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