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Assessment of Near-Angle Scatter on Exo-Earth CoronagraphyNear-Angle Scatter (NAS) of the host star’s light into the coronagraph dark hole may limit the ability of a potential Habitable Worlds Observatory (HWO) to detect and characterize an Earth-like planet around a Sun-like star. This paper summarizes a 5-year investigation of the impact of NAS on high-contrast coronagraphy. Science requirements were flowed down to a draft flux ratio noise ratio (FRN) error budget with allocations for NAS. The modeled sources of NAS include correlated (low and mid-spatial) surface structure, uncorrelated surface microroughness and coating structure, particulate contamination, micrometeoroid impacts and polarization leakage.

The paper develops specifications for these sources of scattered light that meet their FRN error budget allocations, distinguishing between scatter that can and cannot be modulated. The development process utilizes an analytical expression that predicts scatter throughput into the dark hole based on BRDF/BSDF. Using this relationship, Photon Engineering performed a FRED® straylight analysis of the HWO EAC-1 (Exploratory Analytical Case #1) coronagraph to parametrically study predicted scattered light contrast in the dark hole. The model revealed that primary mirror microroughness or contamination is not a significant source of scattered light; the most critical surfaces are the smallest and those located closest to the coronagraph focal plane mask. The assessment found that uncorrelated microstructure, contamination, and micrometeoroid impacts require more investigation and potential significant sources of unmodulated scattered light, and highlights that slow thermal wavefront drift is an order of magnitude more impactful than fast mechanical jitter.
Document ID
20260005131
Acquisition Source
Marshall Space Flight Center
Document Type
Preprint (Draft being sent to journal)
Authors
H Philip Stahl
(Marshall Space Flight Center Redstone Arsenal, United States)
Bijan Nemati
(Tellus1 Scientific Madison, Alabama, United States)
Manuel Quijada
(Goddard Space Flight Center Greenbelt, United States)
Luis Rodriguez
(Catholic University of America Washington, United States)
Scott Ellis
(Photon Engineering)
Date Acquired
June 5, 2026
Publication Date
June 18, 2026
Publication Information
Publication: Journal of Astronomical Telescopes, Instruments, and Systems (JATIS)
Publisher: SPIE
Issue: Special: HWO
Issue Publication Date: June 18, 2026
Subject Category
Astrophysics
Funding Number(s)
WBS: 141108.04.02.01.81
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
Single Expert
Keywords
coronagraphy
micrometeoroid impact
contamination
error budget
diffuse scatter
angular scatter
near-angle scattered light
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