SKYSURF: Constraints on Zodiacal Light and Extragalactic Background Light through Panchromatic HST All-Sky Surface-Brightness Measurements: I. Survey Overview and Methods
Rogier A. Windhorst (1), Timothy Carleton (1), Rosalia O'Brien (1),, Seth H. Cohen (1), Delondrae Carter (1), Rolf Jansen (1), Scott Tompkins (1),, Richard G. Arendt (2), Sarah Caddy (3), Norman Grogin (4), Anton Koekemoer, (4), John MacKenty (4), Stefano Casertano (4)

TL;DR
SKYSURF leverages HST archival data to measure sky surface brightness across multiple wavelengths, aiming to constrain components like Zodiacal Light, Galactic Light, and Extragalactic Background Light, using novel methods to estimate diffuse light contributions.
Contribution
This paper introduces new methods for accurately measuring the sky surface brightness and diffuse light using HST archival images, improving constraints on cosmic light components.
Findings
Algorithms recover known sky values within 0.2% accuracy.
Diffuse light excess over Zodiacal model is independent of object flux.
Validated methods on simulated and real HST images.
Abstract
We give an overview and describe the rationale, methods, and testing of the Hubble Space Telescope (HST) Archival Legacy project "SKYSURF." SKYSURF uses HST's unique capability as an absolute photometer to measure the ~0.2-1.7 m sky surface brightness (SB) from 249,861 WFPC2, ACS, and WFC3 exposures in ~1400 independent HST fields. SKYSURF's panchromatic dataset is designed to constrain the discrete and diffuse UV to near-IR sky components: Zodiacal Light (ZL; inner Solar System), Kuiper Belt Objects (KBOs; outer Solar System), Diffuse Galactic Light (DGL), and the discrete plus diffuse Extragalactic Background Light (EBL). We outline SKYSURF's methods to: (1) measure sky-SB levels between its detected objects; (2) measure the integrated discrete EBL, most of which comes from AB17-22 mag galaxies; and (3) estimate how much diffuse light may exist in addition to the…
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Taxonomy
TopicsCCD and CMOS Imaging Sensors · Adaptive optics and wavefront sensing · Calibration and Measurement Techniques
