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REDSHIFT ASSESSMENT INFRASTRUCTURE LAYERS (RAIL): RUBIN-ERA PHOTOMETRIC REDSHIFT STRESS-TESTING AND AT-SCALE PRODUCTION

Journal articles  - Journal Article
Van Den Busch, JL; Charles, E; Cohen-Tanugi, J; Crafford, A; Crenshaw, JF; Dagoret, S; De-Santiago, J; De Vicente, J; Hang, Q; Joachimi, B ...
Published in: Open Journal of Astrophysics
January 1, 2026

Virtually all extragalactic use cases of the Vera C. Rubin Observatory’s Legacy Survey of Space and Time (LSST) require the use of galaxy redshift information, yet the vast majority of its sample of tens of billions of galaxies will lack high-fidelity spectroscopic measurements thereof, instead relying on photometric redshifts (photo-z) subject to systematic imprecision and inaccuracy best encapsulated by photo-z probability density functions (PDFs). We present the version 1 release of Redshift Assessment Infrastructure Layers (RAIL), an open source Python library for at-scale probabilistic photo-z estimation, initiated by the LSST Dark Energy Science Collaboration (DESC) with contributions from the LSST Interdisciplinary Network for Collaboration and Computing (LINCC) Frameworks team. RAIL’s three subpackages provide modular tools for end-to-end stress-testing, including a forward modeling suite to generate realistically complex photometry, a unified API for estimating per-galaxy and ensemble redshift PDFs by an extensible set of algorithms, and built-in metrics of both photo-z PDFs and point estimates. RAIL serves as a flexible toolkit enabling the derivation and optimization of photo-z data products at scale for a variety of science goals and is not specific to LSST data. We thus describe to the extragalactic science community including and beyond Rubin the design and functionality of the RAIL software library so that any researcher may have access to its wide array of photo-z characterization and assessment tools.

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Published In

Open Journal of Astrophysics

DOI

EISSN

2565-6120

Publication Date

January 1, 2026

Volume

9
 

Citation

APA
Chicago
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Van Den Busch, J. L., Charles, E., Cohen-Tanugi, J., Crafford, A., Crenshaw, J. F., Dagoret, S., … Zhang, T. (2026). REDSHIFT ASSESSMENT INFRASTRUCTURE LAYERS (RAIL): RUBIN-ERA PHOTOMETRIC REDSHIFT STRESS-TESTING AND AT-SCALE PRODUCTION. Open Journal of Astrophysics, 9. https://doi.org/10.33232/001c.158200
Van Den Busch, J. L., E. Charles, J. Cohen-Tanugi, A. Crafford, J. F. Crenshaw, S. Dagoret, J. De-Santiago, et al. “REDSHIFT ASSESSMENT INFRASTRUCTURE LAYERS (RAIL): RUBIN-ERA PHOTOMETRIC REDSHIFT STRESS-TESTING AND AT-SCALE PRODUCTION.” Open Journal of Astrophysics 9 (January 1, 2026). https://doi.org/10.33232/001c.158200.
Van Den Busch JL, Charles E, Cohen-Tanugi J, Crafford A, Crenshaw JF, Dagoret S, et al. REDSHIFT ASSESSMENT INFRASTRUCTURE LAYERS (RAIL): RUBIN-ERA PHOTOMETRIC REDSHIFT STRESS-TESTING AND AT-SCALE PRODUCTION. Open Journal of Astrophysics. 2026 Jan 1;9.
Van Den Busch, J. L., et al. “REDSHIFT ASSESSMENT INFRASTRUCTURE LAYERS (RAIL): RUBIN-ERA PHOTOMETRIC REDSHIFT STRESS-TESTING AND AT-SCALE PRODUCTION.” Open Journal of Astrophysics, vol. 9, Jan. 2026. Scopus, doi:10.33232/001c.158200.
Van Den Busch JL, Charles E, Cohen-Tanugi J, Crafford A, Crenshaw JF, Dagoret S, De-Santiago J, De Vicente J, Hang Q, Joachimi B, Joudaki S, Bryce Kalmbach J, Kannawadi A, Liang S, Lynn O, Malz AI, Mandelbaum R, Mau S, Medina-Varela L, Merz G, Moskowitz I, Oldag D, Ruiz-Zapatero J, Rahman M, Rau MM, Schmidt SJ, Scora J, Shirley R, Stölzner B, Cipriano LTS, Tortorelli L, Yan Z, Zhang T. REDSHIFT ASSESSMENT INFRASTRUCTURE LAYERS (RAIL): RUBIN-ERA PHOTOMETRIC REDSHIFT STRESS-TESTING AND AT-SCALE PRODUCTION. Open Journal of Astrophysics. 2026 Jan 1;9.

Published In

Open Journal of Astrophysics

DOI

EISSN

2565-6120

Publication Date

January 1, 2026

Volume

9