Detection of Anomalous Microwave Emission in the Pleiades Reflection Nebula with WMAP and the COSMOSOMAS Experiment
arXiv:1109.4171 · doi:10.1088/0004-637X/743/1/67
Abstract
We present evidence for anomalous microwave emission (AME) in the Pleiades reflection nebula, using data from the seven-year release of the Wilkinson Microwave Anisotropy Probe (WMAP) and from the COSMOSOMAS experiment. The flux integrated in a 1-degree radius around R.A.=56.24^{\circ}, Dec.=23.78^{\circ} (J2000) is 2.15 +/- 0.12 Jy at 22.8 GHz, where AME is dominant. COSMOSOMAS data show no significant emission, but allow to set upper limits of 0.94 and 1.58 Jy (99.7% C.L.) respectively at 10.9 and 14.7 GHz, which are crucial to pin down the AME spectrum at these frequencies, and to discard any other emission mechanisms which could have an important contribution to the signal detected at 22.8 GHz. We estimate the expected level of free-free emission from an extinction-corrected H-alpha template, while the thermal dust emission is characterized from infrared DIRBE data and extrapolated to microwave frequencies. When we deduct the contribution from these two components at 22.8 GHz the residual flux, associated with AME, is 2.12 +/- 0.12 Jy (17.7-sigma). The spectral energy distribution from 10 to 60 GHz can be accurately fitted with a model of electric dipole emission from small spinning dust grains distributed in two separated phases of molecular and atomic gas, respectively. The dust emissivity, calculated by correlating the 22.8 GHz data with 100-micron data, is found to be 4.36+/-0.17 muK/MJy/sr, a value that is rather low compared with typical values in dust clouds. The physical properties of the Pleiades nebula indicate that this is indeed a much less opaque object than others were AME has usually been detected. This fact, together with the broad knowledge of the stellar content of this region, provides an excellent testbed for AME characterization in physical conditions different from those generally explored up to now.
Accepted for publication in ApJ. 12 pages, 8 figures
References in corpus (2)
Cited by in corpus (16)
- The State-of-Play of Anomalous Microwave Emission (AME) Research
- Measurements of the Intensity and Polarization of the Anomalous Microwave Emission in the Perseus molecular complex with QUIJOTE
- QUIJOTE Scientific Results. II. Polarisation Measurements of the Microwave Emission in the Galactic molecular complexes W43 and W47 and supernova remnant W44
- A multi-wavelength investigation of RCW175: an HII region harboring spinning dust emission
- Detection of Spectral Variations of Anomalous Microwave Emission with QUIJOTE and C-BASS
- New radio observations of anomalous microwave emission in the HII region RCW175
- Using cm Observations to Constrain the Abundance of Very Small Dust Grains in Galactic Cold Cores
- On the Limitations of the Anomalous Microwave Emission Emissivity
- Detailed study of the microwave emission of the supernova remnant 3C 396
- QUIJOTE scientific results -- X. Spatial variations of Anomalous Microwave Emission along the Galactic plane
- QUIJOTE scientific results -- V. The microwave intensity and polarisation spectra of the Galactic regions W49, W51 and IC443
- Large Radio Telescopes for Anomalous Microwave Emission Observations
- QUIJOTE scientific results -- XVIII. New constraints on the polarization of the Anomalous Microwave Emission in bright Galactic regions: \,Ophiuchi, Perseus and W43
- Spectrum of the Anomalous Microwave Emission in the North Celestial Pole with WMAP 7-Year data
- A characterization of the diffuse Galactic emissions in the anti-center of the Galaxy
- A characterization of the diffuse Galactic emissions at large angular scales using the Tenerife data