English

Modeling of the diffuse background produced by the Vera C. Rubin Observatory M2 baffle scattered light

Instrumentation and Methods for Astrophysics 2026-06-30 v1

Abstract

The Vera C. Rubin Observatory, with its unprecedented field of view and fast focal ratio, will survey the entire sky every 3.5 nights. This unique capacity requires dealing with off axis light that can produce stray light artefacts on the images. The secondary mirror (M2) baffle restricts the light that reaches the LSSTCam detector and it contributes to shaping the inner edge of the telescope optical pupil. This work studies the contribution to the background from the light scattered by the M2 baffle itself. The evanescence of this feature, together with the challenge of isolating it from the sky background, led to the necessity of performing in dome tests using a Collimated Beam Projector (CBP), normally used for calibration purposes. To complete the analysis, in addition to the in dome tests, an on sky observational campaign was conducted. This campaign employed both stellar targets and the Moon as illumination sources in order to determine the actual energy associated with the feature. The test data have been retro fitted thanks to the combination of ray tracing simulation, CBP and on sky data to infer the intensity and spatial distribution of the background scattered light within the different LSSTCam filters. We quantified the on sky impact of scattered light from the M2 baffle, both for light coming from bright and red stars and from the Moon. We also developed an approximate relation to transform the in dome measurements into predictions of on sky behavior. This transformation was achieved by comparing the illumination footprint produced by an off axis star with that generated by the CBP and by mapping the stellar Spectral Energy Distribution (SED) onto the CBP's set of discrete wavelengths. Finally, we extrapolated the scattered light behavior of the Moon to stellar sources, in order to build a compplete description of the M2 baffle contribution over the full range of magnitudes.

Keywords

Cite

@article{arxiv.2606.31793,
  title  = {Modeling of the diffuse background produced by the Vera C. Rubin Observatory M2 baffle scattered light},
  author = {Alessio Taranto and Gabriele Rodeghiero and Luca Rosignoli and Aashay Pai and Alex Drlica Wagner and Elana K. Urbach and Fritz Muller and Eli S. Rykoff and Hannah M. M. Pollek and John Andrew and Douglas R. Neill and Parker Fragelius and Tomislav Vucina and Christopher W. Stubbs and Robert H. Lupton and Lee S. Kelvin and Kate Napier and Jacqueline Seron Navarrete and Travis Lange and Andrew P. Rasmussen and Aaron Roodman and Chuck F. Claver and Joshua E. Meyers and Anastasia Alexov and Keith Bechtol and Brian Stalder and R. Lynne Jones and Leanne P. Guy and Tiago Ribeiro and Erik Dennihy and Bruno C. Quint and Aaron E. Watkins and Alysha B. Shugart and Lukas Eisert and Kevin Fanning and Marina S. Pavlovich and Yijung Kang and Hye Yun Park and Paulo Lago and Kris Mortensen and Paulina Venegas Salas and Minhee Hyun and Karla Pena Ramirez and David Sanmartim and Qianjun Hang and Gonzalo Aravena and Kshitija Kelkar and Carlos A. L. Morales Marin and Danica Zilkova and Eric J. Christensen and Yusra Alsayyad and William O'Mullane and Enrico Giro and Rodolfo Canestrari and Sandrine J. Thomas and Kevin A. Reil and Claudio H. Araya Cortes and Roberto Tighe and Holger Drass and Pablo Zorzi and Massimo Brescia},
  journal= {arXiv preprint arXiv:2606.31793},
  year   = {2026}
}

Comments

21 pages, 10 figures, submitted to SPIE Astronomical Telescopes + Instrumentation 2026