Anomalous Flux in the Cosmic Optical Background Detected with New Horizons Observations

Author:

Lauer Tod R.ORCID,Postman MarcORCID,Spencer John R.ORCID,Weaver Harold A.ORCID,Stern S. AlanORCID,Gladstone G. RandallORCID,Binzel Richard P.ORCID,Britt Daniel T.,Buie Marc W.ORCID,Buratti Bonnie J.ORCID,Cheng Andrew F.ORCID,Grundy W. M.ORCID,Horányi MihalyORCID,Kavelaars J. J.ORCID,Linscott Ivan R.ORCID,Lisse Carey M.ORCID,McKinnon William B.ORCID,McNutt Ralph L.ORCID,Moore Jeffrey M.ORCID,Núñez J. I.,Olkin Catherine B.ORCID,Parker Joel W.ORCID,Porter Simon B.ORCID,Reuter Dennis C.,Robbins Stuart J.ORCID,Schenk Paul M.ORCID,Showalter Mark R.ORCID,Singer Kelsi N.ORCID,Verbiscer Anne. J.ORCID,Young Leslie A.ORCID

Abstract

Abstract We used New Horizons LORRI images to measure the optical-band (0.4 ≲ λ ≲ 0.9μm) sky brightness within a high-galactic-latitude field selected to have reduced diffuse scattered light from the Milky Way galaxy (DGL), as inferred from the IRIS all-sky 100 μm map. We also selected the field to significantly reduce the scattered light from bright stars (SSL) outside the LORRI field. Suppression of DGL and SSL reduced the large uncertainties in the background flux levels present in our earlier New Horizons cosmic optical background (COB) results. The raw total sky level, measured when New Horizons was 51.3 au from the Sun, is 24.22 ± 0.80 nW m−2 sr−1. Isolating the COB contribution to the raw total required subtracting scattered light from bright stars and galaxies, faint stars below the photometric detection limit within the field, and the hydrogen plus ionized-helium two-photon continua. This yielded a highly significant detection of the COB at 16.37 ± 1.47 nW m−2 sr−1 at the LORRI pivot wavelength of 0.608 μm. This result is in strong tension with the hypothesis that the COB only comprises the integrated light of external galaxies (IGL) presently known from deep HST counts. Subtraction of the estimated IGL flux from the total COB level leaves a flux component of unknown origin at 8.06 ± 1.92 nW m−2 sr−1. Its amplitude is equal to the IGL.

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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