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Fitting peculiar spectral profiles in He I 10830 angstrom absorption features

  • The new generation of solar instruments provides better spectral, spatial, and temporal resolution for a better understanding of the physical processes that take place on the Sun. Multiple-component profiles are more commonly observed with these instruments. Particularly, the He i 10830 triplet presents such peculiar spectral profiles, which give information on the velocity and magnetic fine structure of the upper chromosphere. The purpose of this investigation is to describe a technique to efficiently fit the two blended components of the He i 10830 triplet, which are commonly observed when two atmospheric components are located within the same resolution element. The observations used in this study were taken on 2015 April 17 with the very fast spectroscopic mode of the GREGOR Infrared Spectrograph (GRIS) attached to the 1.5-m GREGOR solar telescope, located at the Observatorio del Teide, Tenerife, Spain. We apply a double-Lorentzian fitting technique using Levenberg-Marquardt least-squares minimization. This technique is veryThe new generation of solar instruments provides better spectral, spatial, and temporal resolution for a better understanding of the physical processes that take place on the Sun. Multiple-component profiles are more commonly observed with these instruments. Particularly, the He i 10830 triplet presents such peculiar spectral profiles, which give information on the velocity and magnetic fine structure of the upper chromosphere. The purpose of this investigation is to describe a technique to efficiently fit the two blended components of the He i 10830 triplet, which are commonly observed when two atmospheric components are located within the same resolution element. The observations used in this study were taken on 2015 April 17 with the very fast spectroscopic mode of the GREGOR Infrared Spectrograph (GRIS) attached to the 1.5-m GREGOR solar telescope, located at the Observatorio del Teide, Tenerife, Spain. We apply a double-Lorentzian fitting technique using Levenberg-Marquardt least-squares minimization. This technique is very simple and much faster than inversion codes. Line-of-sight Doppler velocities can be inferred for a whole map of pixels within just a few minutes. Our results show sub-and supersonic downflow velocities of up to 32 km s(-1) for the fast component in the vicinity of footpoints of filamentary structures. The slow component presents velocities close to rest. (C) 2016 WILEY-VCH Verlag GmbH& Co. KGaA, Weinheimzeige mehrzeige weniger

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Verfasserangaben:Sergio Javier Gonzalez ManriqueORCiD, Christoph KuckeinORCiD, A. Pastor Yabar, M. Collados Vera, Carsten DenkerORCiDGND, C. E. Fischer, P. Gömöry, Andrea DierckeORCiDGND, N. Bello Gonzalez, R. Schlichenmaier, H. Balthasar, T. Berkefeld, A. Feller, S. Hoch, A. Hofmann, F. Kneer, A. Lagg, H. Nicklas, D. Orozco Suarez, D. Schmidt, W. Schmidt, M. Sigwarth, M. Sobotka, S. K. Solanki, D. Soltau, J. Staude, Klaus G. StrassmeierORCiDGND, Meetu VermaORCiD, R. Volkmer, O. von der Lühe, T. Waldmann
DOI:https://doi.org/10.1002/asna.201512433
ISSN:0004-6337
ISSN:1521-3994
Titel des übergeordneten Werks (Englisch):Astronomische Nachrichten = Astronomical notes
Verlag:Wiley-VCH
Verlagsort:Weinheim
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Jahr der Erstveröffentlichung:2016
Erscheinungsjahr:2016
Datum der Freischaltung:22.03.2020
Freies Schlagwort / Tag:Sun: chromosphere; line: profiles; methods: data analysis; techniques: spectroscopic
Band:337
Seitenanzahl:7
Erste Seite:1057
Letzte Seite:1063
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
Peer Review:Referiert
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