QUIJOTE scientific results - III. Microwave spectrum of intensity and polarization in the Taurus Molecular Cloud complex and L1527
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Poidevin, Frédérick; Rubiño Martín, José Alberto; Dickinson, C.; Génova Santos, Ricardo Tanausú; Harper, S.; Rebolo López, Rafael; Casaponsa Galí, Biuse; Peláez Santos, A.; Vignaga, R.; Guidi, Federica; Ruiz Granados, B.; Tramonte, D.; Vansyngel, F.; Ashdown, Mark; Herranz Muñoz, Diego
Fecha
2019-06Derechos
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ©: 2018 The Autor(s). Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.
Publicado en
MNRAS 486, 462-485 (2019)
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Oxford University Press
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Palabras clave
Radiation mechanisms: general
ISM: individual object
ISM: Taurus Molecular Cloud, L1527
Diffuse radiation
Radio continuum: ISM.
Resumen/Abstract
ABSTRACT: We present new intensity and polarization observations of the Taurus Molecular Cloud (TMC) region in the frequency range 10–20 GHz with the multifrequency instrument (MFI) mounted on the first telescope of the Q-U-I-JOint TEnerife (QUIJOTE) experiment. From the combination of the QUIJOTE data with the WMAP 9-yr data release, the Planck second data release, the DIRBE maps, and ancillary data, we detect an anomalous microwave emission (AME) component with flux density SAME,peak = 43.0 ± 7.9 Jy in the TMC and SAME,peak = 10.7 ± 2.7 Jy in the dark cloud nebula L1527, which is part of the TMC. In the TMC the diffuse AME emission peaks around a frequency of 19 GHz, compared with an emission peak about a frequency of 25 GHz in L1527. In the TMC, the best constraint on the level of AME polarization is obtained at the Planck channel of 28.4 GHz, with an upper limit πAME < 4.2 per cent (95 per cent C.L.), which reduces to πAME < 3.8 per cent (95 per cent C.L.) if the intensity of all the free–free, synchrotron and thermal dust components are negligible at this frequency. The same analysis in L1527 leads to πAME < 5.3 per cent (95 per cent C.L.) or πAME < 4.5 per cent (95 per cent C.L.) under the same assumption. We find that in the TMC and L1527 on average about 80 per cent of the H II gas should be mixed with thermal dust. Our analysis shows how the QUIJOTE-MFI 10–20 GHz data provide key information to properly separate the synchrotron, free–free, and AME components.