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    Planck 2018 results: IV. Diffuse component separation

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    Planck2018resultsIV.pdf (19.20Mb)
    Identificadores
    URI: http://hdl.handle.net/10902/24840
    DOI: https://doi.org/10.1051/0004-6361/201833881
    ISSN: 0004-6361
    ISSN: 1432-0746
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    Autoría
    Akrami, Y.; Barreiro Vilas, Rita BelénAutoridad Unican; Casaponsa Galí, Biuse; Diego Rodríguez, José MaríaAutoridad Unican; Fernández Cobos, RaúlAutoridad Unican; Herranz Muñoz, DiegoAutoridad Unican; Marcos Caballero, Airam Eduardo; Martínez González, Enrique; Vielva Martínez, PatricioAutoridad Unican
    Fecha
    2020
    Derechos
    © ESO
    Publicado en
    Astronomy & Astrophysics. Vol. 641, Sep. 2020. A4
    Editorial
    EDP Sciences
    Enlace a la publicación
    https://doi.org/10.1051/0004-6361/201833881
    Palabras clave
    ISM: general
    Cosmology: observations
    Cosmic background radiation
    Difuse radiation
    Galaxy: general
    Resumen/Abstract
    We present full-sky maps of the cosmic microwave background (CMB) and polarized synchrotron and thermal dust emission, derived from the third set of Planck frequency maps. These products have significantly lower contamination from instrumental systematic effects than previous versions. The methodologies used to derive these maps follow closely those described in earlier papers, adopting four methods (Commander, NILC, SEVEM, and SMICA) to extract the CMB component, as well as three methods (Commander, GNILC, and SMICA) to extract astrophysical components. Our revised CMB temperature maps agree with corresponding products in the Planck 2015 delivery, whereas the polarization maps exhibit significantly lower large-scale power, reflecting the improved data processing described in companion papers; however, the noise properties of the resulting data products are complicated, and the best available end-to-end simulations exhibit relative biases with respect to the data at the few percent level. Using these maps, we are for the first time able to fit the spectral index of thermal dust independently over 3° regions. We derive a conservative estimate of the mean spectral index of polarized thermal dust emission of ?d?=?1.55? ± ?0.05, where the uncertainty marginalizes both over all known systematic uncertainties and different estimation techniques. For polarized synchrotron emission, we find a mean spectral index of ?s?=??3.1? ± ?0.1, consistent with previously reported measurements. We note that the current data processing does not allow for construction of unbiased single-bolometer maps, and this limits our ability to extract CO emission and correlated components. The foreground results for intensity derived in this paper therefore do not supersede corresponding Planck 2015 products. For polarization the new results supersede the corresponding 2015 products in all respects.
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    UNIVERSIDAD DE CANTABRIA

    Repositorio realizado por la Biblioteca Universitaria utilizando DSpace software
    Contacto | Sugerencias
    Metadatos sujetos a:licencia de Creative Commons Reconocimiento 4.0 España