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  • 1
    Publikationsdatum: 2019-07-13
    Beschreibung: We present simultaneous XMM-Newton and NuSTAR observations of the 'bare' Seyfert 1 galaxy, Ark 120, a system in which ionized absorption is absent. The NuSTAR hard-X-ray spectral coverage allows us to constrain different models for the excess soft-X-ray emission. Among phenomenological models, a cutoff power law best explains the soft-X-ray emission. This model likely corresponds to Comptonization of the accretion disc seed UV photons by a population of warm electrons: using Comptonization models, a temperature of approximately 0.3 kiloelectronvolts and an optical depth of approximately 13 are found. If the UV-to-X-ray OPTXAGNF model is applied, the UV fluxes from the XMM-Newton Optical Monitor suggest an intermediate black hole spin. Contrary to several other sources observed by NuSTAR, no high-energy cutoff is detected with a lower limit of 190 kiloelectronvolts.
    Schlagwort(e): Astronomy; Astrophysics
    Materialart: GSFC-E-DAA-TN24163 , Monthly Notices Of the Royal Astromical Society; 439; 3; 3016-3021
    Format: application/pdf
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  • 2
    Publikationsdatum: 2019-07-13
    Beschreibung: We report on the first 10 identifications of sources serendipitously detected by the Nuclear Spectroscopic Telescope Array (NuSTAR) to provide the first sensitive census of the cosmic X-ray background source population at approximately greater than 10 keV. We find that these NuSTAR-detected sources are approximately 100 times fainter than those previously detected at approximately greater than 10 keV and have a broad range in redshift and luminosity (z = 0.020-2.923 and L(sub 10-40 keV) approximately equals 4 10(exp 41) - 5 10(exp 45) erg per second; the median redshift and luminosity are z approximately equal to 0.7 and L(sub 10-40 keV) approximately equal to 3 10(exp 44) erg per second, respectively. We characterize these sources on the basis of broad-band approximately equal to 0.5 - 32 keV spectroscopy, optical spectroscopy, and broad-band ultraviolet-to-mid-infrared spectral energy distribution analyses. We find that the dominant source population is quasars with L(sub 10-40 keV) greater than 10(exp 44) erg per second, of which approximately 50% are obscured with N(sub H) approximately greater than 10(exp 22) per square centimeters. However, none of the 10 NuSTAR sources are Compton thick (N(sub H) approximately greater than 10(exp 24) per square centimeters) and we place a 90% confidence upper limit on the fraction of Compton-thick quasars (L(sub 10-40 keV) greater than 10(exp 44) erg per second) selected at approximately greater than 10 keV of approximately less than 33% over the redshift range z = 0.5 - 1.1. We jointly fitted the rest-frame approximately equal to 10-40 keV data for all of the non-beamed sources with L(sub 10-40 keV) greater than 10(exp 43) erg per second to constrain the average strength of reflection; we find R less than 1.4 for gamma = 1.8, broadly consistent with that found for local active galactic nuclei (AGNs) observed at approximately greater than 10 keV. We also constrain the host-galaxy masses and find a median stellar mass of approximately 10(exp 11) solar mass, a factor approximately 5 times higher than the median stellar mass of nearby high-energy selected AGNs, which may be at least partially driven by the order of magnitude higher X-ray luminosities of the NuSTAR sources. Within the low source-statistic limitations of our study, our results suggest that the overall properties of the NuSTAR sources are broadly similar to those of nearby high-energy selected AGNs but scaled up in luminosity and mass.
    Schlagwort(e): Astronomy; Astrophysics
    Materialart: GSFC-E-DAA-TN11750 , The Astrophysical Journal; 773; 2; 125
    Format: application/pdf
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  • 3
    Publikationsdatum: 2019-07-13
    Beschreibung: We present an analysis of an approximately 160 ks NuSTAR observation of the nearby bright Seyfert galaxy IC 4329A. The highquality broadband spectrum enables us to separate the effects of distant reflection from the direct coronal continuum, and to therefore accurately measure the high-energy cutoff to be E(sub cut) = 178 (+74 / 40) keV. The coronal emission arises from accretion disk photons Compton up-scattered by a thermal plasma, with the spectral index and cutoff being due to a combination of the finite plasma temperature and optical depth. Applying standard Comptonization models, we measure both physical properties independently using the best signal to noise obtained to date in an active galactic nucleus over the 3 - 79 keV band. We derive kT(sub e) = 37(+7 /6) keV with tau = 1.25(+0.20 / 0.10) assuming a slab geometry for the plasma, and kT(sub e) = 33(+6 / 6) keV with tau = 3.41(+0.58 / 0.38) for a spherical geometry, with both having an equivalent goodness-of-fit.
    Schlagwort(e): Astronomy; Astrophysics
    Materialart: GSFC-E-DAA-TN64665 , GSFC-E-DAA-TN16193 , The Astrophysical Journal (ISSN 0004-637X) (e-ISSN 1538-4357); 781; 2; 83
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  • 4
    Publikationsdatum: 2019-07-13
    Beschreibung: The narrow-line Seyfert I galaxy, 1H0707495, has been well observed in the 0.3-10 kiloelectronvolt band, revealing a dramatic drop in flux in the iron K-alpha band, a strong soft excess, and short time-scale reverberation lags associated with these spectral features. In this paper, we present the first results of a deep 250-kilosecond NuSTAR (Nuclear Spectroscopic Telescope Array) observation of 1H0707495, which includes the first sensitive observations above 10 kiloelectronvolts. Even though the NuSTAR observations caught the source in an extreme low-flux state, the Compton hump is still significantly detected. NuSTAR, with its high effective area above 7 kiloelectronvolts, clearly detects the drop in flux in the iron K-alpha band, and by comparing these observations with archival XMM-Newton observations, we find that the energy of this drop increases with increasing flux. We discuss possible explanations for this, the most likely of which is that the drop in flux is the blue wing of the relativistically broadened iron K-alpha emission line. When the flux is low, the coronal source height is low, thus enhancing the most gravitationally red-shifted emission.
    Schlagwort(e): Astronomy; Astrophysics
    Materialart: GSFC-E-DAA-TN35008 , Monthly Notices of the Royal Astronomical Society; 449; 1; 234-242
    Format: text
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  • 5
    Publikationsdatum: 2019-07-13
    Beschreibung: We present an analysis of an approximately 160 ks NuSTAR observation of the nearby bright Seyfert galaxy IC 4329A. The highquality broadband spectrum enables us to separate the effects of distant reflection from the direct coronal continuum, and to therefore accurately measure the high-energy cutoff to be E(sub cut) = 178 (+74 / 40) keV. The coronal emission arises from accretion disk photons Compton up-scattered by a thermal plasma, with the spectral index and cutoff being due to a combination of the finite plasma temperature and optical depth. Applying standard Comptonization models, we measure both physical properties independently using the best signal to noise obtained to date in an active galactic nucleus over the 3 - 79 keV band. We derive kT(sub e) = 37(+7 /6) keV with tau = 1.25(+0.20 / 0.10) assuming a slab geometry for the plasma, and kT(sub e) = 33(+6 / 6) keV with tau = 3.41(+0.58 / 0.38) for a spherical geometry, with both having an equivalent goodness-of-fit.
    Schlagwort(e): Astronomy; Astrophysics
    Materialart: GSFC-E-DAA-TN21799 , The Astrophysical Journal; 781; 2; 83
    Format: application/pdf
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  • 6
    Publikationsdatum: 2019-07-12
    Beschreibung: No abstract available
    Schlagwort(e): Astronomy; Astrophysics
    Materialart: M15-4159
    Format: application/pdf
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