AKARI Observation of the Sub-degree Scale Fluctuation of the Near-infrared Background
arXiv:1504.05681 · doi:10.1088/0004-637X/807/2/140
Abstract
We report spatial fluctuation analysis of the sky brightness in near-infrared from observations toward the north ecliptic pole (NEP) by the AKARI at 2.4 and 3.2 micron. As a follow up study of our previous work on the Monitor field of AKARI, we used NEP deep survey data, which covered a circular area of about 0.4 square degrees, in order to extend fluctuation analysis at angular scales up to 1000". We found residual fluctuation over the estimated shot noise at larger angles than the angular scale of the Monitor field. The excess fluctuation of the NEP deep field smoothly connects with that of the Monitor field at angular scales with a few hundreds arcseconds and extends without any significant variation to larger angular scales up to 1000". By comparing excess fluctuations at two wavelengths, we confirm a blue spectrum feature similar to the result of the Monitor field. We find that the result of this study is consistent with Spitzer Space Telescope observations at 3.6 micron. The origin of the excess fluctuation in the near-infrared background remains to be answered, but we could exclude zodiacal light, diffuse Galactic light, and unresolved faint galaxies at low-redshift based on the comparison with mid- and far-infrared brightness, ground based near-infrared images.
35 pages, 17 figures, accepted for publication in ApJ
References in corpus (6)
- On the Origin of Near-Infrared Extragalactic Background Light Anisotropy
- DIRBE Minus 2MASS: Confirming the CIRB in 40 New Regions at 2.2 and 3.5 Microns
- An Optical Source Catalog of the North Ecliptic Pole Region
- Optical - Near-Infrared catalogue for the AKARI North Ecliptic Pole Deep Field
- Clustering of the IR Background Light with Spitzer: Contribution from Resolved Sources
- Contribution to Unresolved Infrared Fluctuations from Dwarf Galaxies at Redshifts of 2-3
Cited by in corpus (13)
- Probing large scale coherence between Spitzer IR and Chandra X-ray source-subtracted cosmic backgrounds
- Indirect Detection of eV Dark Matter via Infrared Spectroscopy
- Can decaying particle explain cosmic infrared background excess?
- Cosmic Near-infrared Background Tomography with SPHEREx Using Galaxy Cross-correlations
- Searching for axion-like particle decay in the near-infrared background: an updated analysis
- Probing Intra-Halo Light with Galaxy Stacking in CIBER Images
- AKARI near-infrared background fluctuations arise from normal galaxy populations
- Near-infrared Extragalactic Background Light Fluctuations on Nonlinear Scales
- Constraints on galaxy formation from the cosmic-far-infrared-background\,\,optical-imaging cross-correlation using \textit{Herschel} and UNIONS
- The Cosmic Infrared Background Experiment-2: An Intensity Mapping Optimized Sounding-rocket Payload to Understand the Near-IR Extragalactic Background Light
- Space Missions for Astronomy and Astrophysics in Korea: Past, Present, and Future
- Revealing the formation histories of the first stars with the cosmic near-infrared background
- Reanalysis of near-infrared extragalactic background light based on the IRTS observation