Electron Diffraction Refinement Engine - SHELXL-compatible crystallographic refinement for 3D ED/microED
Project description
EDref v3
Electron Diffraction Refinement Engine - A Python library for crystallographic structure refinement compatible with SHELXL.
Overview
EDref is a modular implementation of least-squares crystallographic refinement on F². It can reproduce SHELXL's kinematic refinement workflow and supports both X-ray and electron diffraction data.
Installation
# Development installation
cd EDref_v3
pip install -e .
# With development dependencies
pip install -e ".[dev]"
Quick Start
from edref import (
InsFileReader, HklFileReader,
SpaceGroup,
calculate_reciprocal_cell,
calculate_structure_factor,
merge_reflections,
calculate_R1,
)
# Load structure
ins = InsFileReader("structure.ins").read()
hkl = HklFileReader("structure.hkl").read()
# Setup
reciprocal = calculate_reciprocal_cell(ins.cell)
spacegroup = SpaceGroup(ins.latt, ins.symm)
# Merge reflections
merged = merge_reflections(hkl.reflections, spacegroup)
# Calculate structure factors
for refl in merged[:5]:
Fc = calculate_structure_factor(
refl.h, refl.k, refl.l,
ins.atoms, ins.sfac,
spacegroup, reciprocal,
ins.wavelength
)
print(f"({refl.h},{refl.k},{refl.l}): |Fc|² = {abs(Fc)**2:.2f}")
Package Structure
src/edref/
├── core/ # Crystallographic fundamentals
│ ├── crystallography.py # Unit cell, d-spacing
│ ├── symmetry.py # Space group operations
│ ├── scattering.py # Atomic scattering factors
│ └── structure_factors.py # F(hkl) calculation
├── io/ # File I/O
│ ├── formats.py # Data classes
│ └── shelxl.py # SHELXL file readers
├── refinement/ # Least-squares refinement
│ ├── weighting.py # SHELXL weighting scheme
│ └── statistics.py # R-factors, GooF
└── analysis/ # Data processing
└── merging.py # Reflection merging
Key Features
- SHELXL-compatible: Reproduces SHELXL kinematic refinement
- Type hints: Full type annotations for better IDE support
- Modular design: Use only the components you need
- No hard-coded paths: All paths are parameters
- Electron diffraction: Supports custom SFAC coefficients
Validated Against SHELXL
- Aspirin (P2₁/c, 21 atoms): R1 within 0.32% of SHELXL
- Structure factors: Correlation > 0.9999 with SHELXL .fcf
Command-Line Interface
EDref includes a CLI for running refinements:
# Run EDref refinement
edref structure.ins --edref
# Run SHELXL for comparison
edref structure.ins --shelxl
# Run both and compare results
edref structure.ins --compare
# With resolution cutoff
edref structure.ins --compare --resolution 99 0.8
Requirements
- Python >= 3.10
- NumPy >= 1.21
- SciPy >= 1.7
- Matplotlib >= 3.5
Documentation
- Full Manual - Complete API reference and examples
- Contributing Guide - How to contribute
- Citation - How to cite EDref
License
MIT License - see LICENSE for details
Project details
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