English

Nancy Grace Roman Space Telescope Wide Field Instrument: Bright Point Source Saturation Response and Persistence Properties from Thermal-Vacuum Testing

Instrumentation and Methods for Astrophysics 2026-07-20 v1 Earth and Planetary Astrophysics Astrophysics of Galaxies Solar and Stellar Astrophysics

Abstract

The Nancy Grace Roman Space Telescope's Wide Field Instrument (WFI) will observe hundreds of thousands of bright stars across its Core Community Surveys, particularly in the dense stellar fields of the Galactic Bulge Time Domain Survey (GBTDS). Sources brighter than ~17th magnitude will saturate WFI detector pixels in typical survey exposures, with the brightest stars deeply saturating large pixel regions and potentially producing persistence signals that may impact subsequent observations. Prior detector characterization did not explore the regime of deep point source saturation. To address this gap, we conducted a bright star saturation test during WFI's second Thermal Vacuum test campaign (TVAC2) at BAE Space & Mission Systems in Boulder, CO. Using the Stimulus of Ray Cones (SORC) telescope simulator, we projected nine in-focus point sources through the F146 filter onto two Sensor Chip Assemblies (SCAs), with fluxes tuned to approximate stellar magnitudes ranging from ~4 to ~18 in ~170 s exposures. We present analyses of the saturation response and persistence properties of these detectors. We find that the saturated region of a ~4 mag source grows to ~150 pixels in diameter after ~170 s of illumination, compared to ~15 pixels for a ~12 mag source. Pixels adjacent to the expanding saturation front exhibit pronounced non-linear behavior consistent with charge leakage from saturated neighbors. For persistence, we find that the median signal in the first post-illumination dark exposure is broadly consistent across source magnitudes spanning ~4 to ~17, and that persistence decays to detector background levels (\lesssim0.05 e^{-} s1^{-1}) within approximately 20 minutes, consistent with flat field persistence measurements from the same TVAC2 campaign. These pre-flight characterization results inform community understanding of WFI detector response to prepare for Roman science.

Keywords

Cite

@article{arxiv.2607.18419,
  title  = {Nancy Grace Roman Space Telescope Wide Field Instrument: Bright Point Source Saturation Response and Persistence Properties from Thermal-Vacuum Testing},
  author = {Dana R. Louie and Robert F. Wilson and Thomas Barclay and Joshua E. Schlieder and Nicholas Bond and Evan Bray and Mario Cabrera and Stephanie Cheung and Ami Choi and Analia Cillis and Nicholas Collins and Tyler D. Groff and Robert J. Hill and Jeffrey Kruk and Gregory Mosby and Jennie Paine and Bernard J. Rauscher and Timothy A. Reichard and Maxime Rizzo and Scott Rohrbach and Nicole Schanche and Eric R. Switzer},
  journal= {arXiv preprint arXiv:2607.18419},
  year   = {2026}
}

Comments

36 pages, 36 figures, submitted to PASP, abstract abridged to meet arXiv requirements, Zenodo link to data products forthcoming, comments welcome!