English

Habitable World Discovery and Characterization: Coronagraph Concept of Operations and Data Post-Processing

Instrumentation and Methods for Astrophysics 2025-10-06 v1 Earth and Planetary Astrophysics

Abstract

The discovery and characterization of habitable worlds was the top scientific recommendation of the Astro2020 decadal survey and is a key objective of the Habitable Worlds Observatory. Biosignature identification drives exceedingly challenging observations, which require raw contrasts of roughly 1010^{-10} contrast and ultimately, 1σ\sigma photometric precision of roughly 3×1012\times 10^{-12} contrast. Despite significant advances for the Nancy Grace Roman Space Telescope's Coronagraph Instrument, technological gaps still exist in a wide range of technologies such as starlight suppression, deformable mirrors, wavefront control, low noise detectors, and high-contrast spectroscopy. Even with these new technologies matured, the Habitable Worlds Observatory must carefully obtain the observations and rely on post-processing of the data to achieve its science objectives. During the START and TAG efforts, a working group was convened to explore the Coronagraph Concept of Operations and Post Processing (COPP) in the context of the Habitable Worlds Observatory. This COPP working group evaluated coronagraphic concept of operations to enable different post processing approaches, such as reference differential imaging and angular differential imaging, polarization differential imaging, orbital differential imaging, coherent differential imaging, spectral processing, and point-spread function subtraction algorithms that incorporate ancillary telemetry and data. Future integrated modeling simulations and testbed demonstrations are needed to determine the achievable post processing gains for each approach. We report a summary of this working group's activities and findings, as well as an outlook for maturation of these techniques and infusion into the Habitable Worlds Observatory technology portfolio.

Keywords

Cite

@article{arxiv.2510.02547,
  title  = {Habitable World Discovery and Characterization: Coronagraph Concept of Operations and Data Post-Processing},
  author = {Michael W. McElwain and Dimitri Mawet and Jean-Baptiste Ruffio and Roser Juanola Parramon and Kellen Lawson and Hervé Le Coroller and Christian Marois and Max Millar-Blanchaer and Bijan Nemati and Susan Redmond and Bin Ren and Laurent Pueyo and Christopher Stark and Scott Will},
  journal= {arXiv preprint arXiv:2510.02547},
  year   = {2025}
}

Comments

8 pages, 2 figures

R2 v1 2026-07-01T06:14:22.535Z