Comparison of absolute gain photometric calibration between Planck/HFI and Herschel/SPIRE at 545 and 857GHz

We compare the absolute gain photometric calibration of the Planck/HFI and Herschel/SPIRE instruments on diffuse emission. The absolute calibration of HFI and SPIRE each relies on planet flux measurements and comparison with theoretical far-infrared emission models of planetary atmospheres. We measu...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2016-04, Vol.588
Hauptverfasser: Bertincourt, B, Lagache, G, Martin, P G, Schulz, B, Conversi, L, Dassas, K, Maurin, L, Abergel, A, Beelen, A, Bernard, J-P
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container_title Astronomy and astrophysics (Berlin)
container_volume 588
creator Bertincourt, B
Lagache, G
Martin, P G
Schulz, B
Conversi, L
Dassas, K
Maurin, L
Abergel, A
Beelen, A
Bernard, J-P
description We compare the absolute gain photometric calibration of the Planck/HFI and Herschel/SPIRE instruments on diffuse emission. The absolute calibration of HFI and SPIRE each relies on planet flux measurements and comparison with theoretical far-infrared emission models of planetary atmospheres. We measure the photometric cross calibration between the instruments at two overlapping bands, 545GHz/500 mu m and 857GHz/350 mu m. The HFI maps are bandpass-corrected to match the emission observed by the SPIRE bandpasses. The SPIRE maps are convolved to match the HFI beam and put on a common pixel grid. We measure the cross-calibration relative gain between the instruments using two methods in each field, pixel-to-pixel correlation and angular power spectrum measurements. Of the 5.5% uncertainty for SPIRE, 4% arises from the uncertainty of the effective beam solid angle, which impacts the adopted SPIRE point source to extended source unit conversion factor, highlighting that as a focus for refinement.
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subjects Beams (radiation)
Calibration
Emission
Gain
Photometry
Spires
Uncertainty
title Comparison of absolute gain photometric calibration between Planck/HFI and Herschel/SPIRE at 545 and 857GHz
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