ARCADE Test of Spinning Dust Emission

Astronomy and Astrophysics – Astronomy

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Scientific paper

We use absolutely calibrated data at 3, 8, and 10 GHz from the 2006 flight of the ARCADE instrument to test models of "anomalous" microwave emission, using a new test based on the spectrum of emission in the Galactic plane. The microwave sky is known to contain an emission component spatially correlated with the far-infrared dust continuum but not with synchrotron-dominated radio surveys. The frequency spectrum of the dust-correlated component differs markedly from the emission spectrum of thermal dust, with spectral index beta -2.2 from 20 GHz to 50 GHz. Two models have emerged to explain this emission: electric dipole emission from a population of small, rapidly rotating dust grains, or flat-spectrum synchrotron emission associated with star formation activity. Previous efforts to distinguish these models have correlated maps of the microwave sky against a template map of thermal dust emission, and examined the frequency dependence of the resulting correlation slope. We find that the observed decrease in dust-correlated emission at frequencies below 20 GHz, although consistent with spinning dust, does not necessarily support such models over the flat-spectrum synchrotron alternative. Both models predict weaker correlations with thermal dust emission at frequencies below 20 GHz. A stronger test relies on the absolute spectrum of the total Galactic emission. We illustrate how the total Galactic brightness at frequencies 3--10 GHz depends on the spinning dust normalization, and use the ARCADE absolute temperature data to test the spinning dust model.

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