Sky Confusion Noise in the Far-Infrared: Cirrus, Galaxies and the Cosmic Far-Infrared Background
arXiv:astro-ph/0110143 · doi:10.1051/0004-6361:20011394
Abstract
We examined the sky confusion noise in 40 sky regions by analysing 175 far-infrared (90--200 m) maps obtained with ISOPHOT, the photometer on-board the Infrared Space Observatory. For cirrus fields with MJysr the formula based on IRAS data (Helou & Beichman, \cite{Helou+Beichman_90}) predicts confusion noise values within a factor of 2 to our measurements. The dependence of the sky confusion noise on the surface brightness was determined for the wavelength range 90 200 m. We verified that the confusion noise scales as N ~ <B>^{1.5}, independent of the wavelength and confirmed N ~ lambda^{2.5}um. The scaling of the noise value at different separations between target and reference positions was investigated for the first time, providing a practical formula. Since our results confirm the applicability of the Helou & Beichman (1990) formula, the cirrus confusion noise predictions made for future space missions with telescopes of a similar size can be trusted. At 90 and 170um a noise term with a Poissonian spatial distribution was detected in the faintest fields (<B> <= 3-5 MJysr^{-1}), which we interpret as fluctuations in the Cosmic Far-Infrared Background (CFIRB). Applying ratios of the fluctuation amplitude to the absolute level of 10% and 7% at 90 and 170um, respectively, as supported by model calculations, we achieved a new simultaneous determination of the fluctuation amplitudes and the surface brightness of the CFIRB. The fluctuation amplitudes are 7(+/-)2 mJy and 15(+/-)4 mJy at 90 and 170um, respectively. We obtained a CFIRB surface brightness of B(0)=0.8(+/-)0.2 MJysr^{-1} (nuI_nu=14(+/-)3nWm^-2sr^-1) at 170um and an upper limit of 1.1 MJysr^{-1} (nuI_nu=37 nWm^-2sr^-1) at 90um.
A&A accepted, 9 pages in A&A style, including 7 figures
References in corpus (1)
Cited by in corpus (25)
- The Spitzer Legacy Survey of the HST-ACS 2 sq. deg. COSMOS Field: survey strategy and first analysis
- Modelling the infrared galaxy evolution using a phenomenological approach
- Deep Extragalactic Surveys around the Ecliptic Poles with AKARI (ASTRO-F)
- Properties of the dense core population in Orion B as seen by the Herschel Gould Belt survey
- Predictions for Cosmological Infrared Surveys from Space with the Multiband Imaging Photometer for SIRTF (MIPS)
- The Far-Infrared All-Sky Survey Maps
- Extragalactic Gamma-ray Absorption and the Intrinsic Spectrum of Mkn 501 During the 1997 Flare
- Observations of Hyperluminous Infrared Galaxies with the Infrared Space Observatory: Implications for the origin of their extreme luminosities
- Cosmic Physics: The High Energy Frontier
- The European Large Area ISO Survey VIII: 90-micron final analysis and source counts
- Direct Estimate of Cirrus Noise in Herschel Hi-GAL Images
- Trouble for cluster parameter estimation from blind SZ surveys?
- Small-scale structure of the galactic cirrus emission
- BLAST05: Power Spectra of Bright Galactic Cirrus at Submillimeter Wavelengths
- Far-IR Detection Limits II: Probing Confusion including Source Confusion
- Galactic cold cores IX. Column density structures and radiative transfer modelling
- Determination of the cosmic far-infrared background level with the ISOPHOT instrument
- Prospects for future studies using deep imaging: Analysis of individual Galactic cirrus filaments
- Determination of confusion noise for far-infrared measurements
- The 60-micron extragalactic background radiation intensity, dust-enshrouded AGNs and the assembly of groups and clusters of galaxies
- Small scale contributions to CMB: A coherent analysis
- ASTRO-F/FIS Observing Simulation: Detection Limits for Point Sources
- Understanding galaxy formation with ISO deep surveys
- Analysis of Galactic cirrus filaments in HSC-SSP high-resolution deep images using artificial neural networks
- Detection of CFIRB with AKARI/FIS Deep Observations