Spectroscopic analysis tool for intEgraL fieLd unIt daTacubEs (satellite): case studies of NGC 7009 and NGC 6778 with MUSE

Author:

Akras S1ORCID,Monteiro H2ORCID,Walsh J R3ORCID,García-Rojas J45ORCID,Aleman I2ORCID,Boffin H3ORCID,Boumis P1ORCID,Chiotellis A1ORCID,Corradi R M L56ORCID,Gonçalves D R7,Gutiérrez-Soto L A8ORCID,Jones D45ORCID,Morisset C9ORCID,Papanikolaou X10

Affiliation:

1. Institute for Astronomy, Astrophysics, Space Application & Remote Sensing, National Observatory Athens, GR-15236, Athens, Greece

2. Instituto de Física e Química, Universidade Federal de Itajubá, Av. BPS 1303, Pinheirinho, 37500-903, Itajubá, MG, Brazil

3. European Southern Observatory. Karl-Schwarzschild Strasse 2, D-85748 Garching, Germany

4. Instituto de Astrofísica de Canarias (IAC), E-38205 La Laguna, Tenerife, Spain

5. Departamento de Astrofísica, Universidad de La Laguna, E38206, La Laguna, Tenerife, Spain

6. GRANTECAN, Cuesta de San José s/n, E-38712 Breña Baja, La Palma, Spain

7. Observatório do Valongo, Universidade Federal do Rio de Janeiro, Ladeira Pedro Antonio 43, Rio de Janeiro 20080-090, Brazil

8. Departamento de Astronomia, IAG, Universidade de São Paulo, Rua do Matão, 1226, 05509-900, São Paulo, Brazil

9. Universidad Nacional Autónoma de México, Instituto de Astronomía, AP 106, Ensenada, 22800, BC, Mexico

10. Dionysos Satellite Observatory (DSO), School of Rural, Surveying and Geoinformatics Engineering, National Technical University of Athens, Iroon Polytechneiou Str. 9, 15780 Zografou, Greece

Abstract

ABSTRACT Integral field spectroscopy (IFS) provides a unique capability to spectroscopically study extended sources over a 2D field of view, but it also requires new techniques and tools. In this paper, we present an automatic code, Spectroscopic Analysis Tool for intEgraL fieLd unIt daTacubEs, satellite, designed to fully explore such capability in the characterization of extended objects, such as planetary nebulae, H ii regions, galaxies, etc. satellite carries out 1D and 2D spectroscopic analysis through a number of pseudo-slits that simulate slit spectrometry, as well as emission line imaging. The 1D analysis permits direct comparison of the integral field unit (IFU) data with previous studies based on long-slit spectroscopy, while the 2D analysis allows the exploration of physical properties in both spatial directions. Interstellar extinction, electron temperatures and densities, ionic abundances from collisionally excited lines, total elemental abundances, and ionization correction factors are computed employing the pyneb package. A Monte Carlo approach is implemented in the code to compute the uncertainties for all the physical parameters. satellite provides a powerful tool to extract physical information from IFS observations in an automatic and user configurable way. The capabilities and performance of satellite are demonstrated by means of a comparison between the results obtained from the Multi Unit Spectroscopic Explorer (MUSE) data of the planetary nebula NGC 7009 with the results obtained from long-slit and IFU data available in the literature. The satellite characterization of NGC 6778 based on MUSE data is also presented.

Funder

ESO

AEI

Ministry of Science, Innovation and Universities

European Regional Development Fund

FEDER

ACIISI

CNPq

European Union

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

UNAM

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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