Metadata-Version: 2.4
Name: oasys-barc4ro
Version: 2026.7.15
Summary: X-ray Refractive Optics Library for Physical Optics
Home-page: https://github.com/oasys-kit/oasys-barc4ro
Download-URL: https://github.com/oasys-kit/oasys-barc4ro
Author: Rafael Celestre, Luca Rebuffi
Author-email: rafael.celestre@esrf.fr
Maintainer: Luca Rebuffi
Maintainer-email: lrebuffi@anl.gov
License: GPLv3
Keywords: dictionary,glossary,synchrotronsimulation
Classifier: Development Status :: 5 - Production/Stable
Classifier: Environment :: Console
Classifier: Environment :: Plugins
Classifier: Programming Language :: Python :: 3
Classifier: License :: OSI Approved :: GNU General Public License v3 or later (GPLv3+)
Classifier: Operating System :: POSIX
Classifier: Operating System :: Microsoft :: Windows
Classifier: Topic :: Scientific/Engineering :: Visualization
Classifier: Topic :: Software Development :: Libraries :: Python Modules
Classifier: Intended Audience :: Education
Classifier: Intended Audience :: Science/Research
Classifier: Intended Audience :: Developers
License-File: LICENSE
Requires-Dist: scipy
Dynamic: author
Dynamic: author-email
Dynamic: classifier
Dynamic: description
Dynamic: download-url
Dynamic: home-page
Dynamic: keywords
Dynamic: license
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=============
oasys-barc4ro
=============

About
-----

This is the distribution for OASYS of:

X-ray Refractive Optics Library for Physical Optics (formerly know as barc4ro)

This library allows simulating compound refractive lenses under the projection approximation, valid for the conditions imposed by the paraxial approximation in the physical optics framework.

Documentation
-------------
https://barc4ro.readthedocs.io/


Source repository
-----------------
https://github.com/oasys-kit/oasys-barc4ro

Quick-installation
------------------

barc4ro can be installed with Python 3.x:

.. code-block:: console

    $ python -m pip install oasys-barc4ro

References
----------

[1] Celestre, R., Chubar, O., Roth, T., Sanchez del Rio, M. and Barrett, R. (2020). [Recent developments in x-ray lenses modelling with SRW](https://doi.org/10.1117/12.2567947). Proc. SPIE 11493, Advances in Computational Methods for X-Ray Optics , 11493-17.

[2] Celestre, R., Berujon, S., Roth, T., Sanchez del Rio, M. and Barrett, R. (2020). [Modelling phase imperfections in compound refractive lenses](https://doi.org/10.1107/S1600577519017235). Journal of Synchrotron Radiation, 27(2), 305318.
