Searching for X-ray emission from AGB stars
Context. Magnetic fields have been measured around asymptotic giant branch (AGB) stars of all chemical types using maser polarization observations. If present, a large-scale magnetic field would lead to X-ray emission, which should be observable using current X-ray observatories. Aims. The aim is to...
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Published in | Astronomy and astrophysics (Berlin) Vol. 543; p. A147 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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ISSN | 0004-6361 1432-0746 1432-0746 |
DOI | 10.1051/0004-6361/201118516 |
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Abstract | Context. Magnetic fields have been measured around asymptotic giant branch (AGB) stars of all chemical types using maser polarization observations. If present, a large-scale magnetic field would lead to X-ray emission, which should be observable using current X-ray observatories. Aims. The aim is to search the archival data for AGB stars that are intrinsic X-ray emitters. Methods. We have searched the ROSAT, CXO, and XMM-Newton archives for serendipitous X-ray observations of a sample of ~500 AGB stars. We specifically searched for the AGB stars detected with GALEX. The data is calibrated, analyzed and the X-ray luminosities and temperatures are estimated as functions of the circumstellar absorption. Results. We identify 13 AGB stars as having either serendipitous or targeted observations in the X-ray data archives, however for a majority of the sources the detailed analysis show that the detections are questionable. Two new sources are detected by ROSAT: T Dra and R UMa. The spectral analysis suggests that the emission associated with these sources could be due to coronal activity or interaction across a binary system. Conclusions. Further observations of the detected sources are necessary to clearly determine the origin of the X-ray emission. Moreover, additional objects should be subject to targeted X-ray observations in order to achieve better constraints for the magnetic fields around AGB stars. |
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AbstractList | Context. Magnetic fields have been measured around asymptotic giant branch (AGB) stars of all chemical types using maser polarization observations. If present, a large-scale magnetic field would lead to X-ray emission, which should be observable using current X-ray observatories. Aims. The aim is to search the archival data for AGB stars that are intrinsic X-ray emitters. Methods. We have searched the ROSAT, CXO, and XMM-Newton archives for serendipitous X-ray observations of a sample of ~500 AGB stars. We specifically searched for the AGB stars detected with GALEX. The data is calibrated, analyzed and the X-ray luminosities and temperatures are estimated as functions of the circumstellar absorption. Results. We identify 13 AGB stars as having either serendipitous or targeted observations in the X-ray data archives, however for a majority of the sources the detailed analysis show that the detections are questionable. Two new sources are detected by ROSAT: T Dra and R UMa. The spectral analysis suggests that the emission associated with these sources could be due to coronal activity or interaction across a binary system. Conclusions. Further observations of the detected sources are necessary to clearly determine the origin of the X-ray emission. Moreover, additional objects should be subject to targeted X-ray observations in order to achieve better constraints for the magnetic fields around AGB stars. Context. Magnetic fields have been measured around asymptotic giant branch (AGB) stars of all chemical types using maser polarization observations. If present, a large-scale magnetic field would lead to X-ray emission, which should be observable using current X-ray observatories. Aims. The aim is to search the archival data for AGB stars that are intrinsic X-ray emitters. Methods. We have searched the ROSAT, CXO, and XMM-Newton archives for serendipitous X-ray observations of a sample of similar to 500 AGB stars. We specifically searched for the AGB stars detected with GALEX. The data is calibrated, analyzed and the X-ray luminosities and temperatures are estimated as functions of the circumstellar absorption. Results. We identify 13 AGB stars as having either serendipitous or targeted observations in the X-ray data archives, however for a majority of the sources the detailed analysis show that the detections are questionable. Two new sources are detected by ROSAT: T Dra and R UMa. The spectral analysis suggests that the emission associated with these sources could be due to coronal activity or interaction across a binary system. Conclusions. Further observations of the detected sources are necessary to clearly determine the origin of the X-ray emission. Moreover, additional objects should be subject to targeted X-ray observations in order to achieve better constraints for the magnetic fields around AGB stars. |
Author | Kastner, J. Montez, R. Ramstedt, S. Vlemmings, W. H. T. |
Author_xml | – sequence: 1 givenname: S. surname: Ramstedt fullname: Ramstedt, S. organization: Argelander Institute for Astronomy, University of Bonn, 53121 Bonn, Germany – sequence: 2 givenname: R. surname: Montez fullname: Montez, R. organization: Rochester Institute of Technology, 54 Lomb Memorial Drive, Rochester, NY 14623, USA – sequence: 3 givenname: J. surname: Kastner fullname: Kastner, J. organization: Rochester Institute of Technology, 54 Lomb Memorial Drive, Rochester, NY 14623, USA – sequence: 4 givenname: W. H. T. surname: Vlemmings fullname: Vlemmings, W. H. T. organization: Onsala Space Observatory, 43992 Onsala, Sweden |
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Keywords | Polarization X ray observation X-rays: stars stars: magnetic field Masers Luminosity stars: AGB and post-AGB Magnetic stars Magnetic fields Asymptotic giant branch Spectral analysis X ray emission |
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Snippet | Context. Magnetic fields have been measured around asymptotic giant branch (AGB) stars of all chemical types using maser polarization observations. If present,... |
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SubjectTerms | activity Astronomy circumstellar envelopes dust formation Earth, ocean, space evolved stars Exact sciences and technology giant-branch stars magnetic mass-loss rates period-luminosity relation planetary-nebulae radio line emission stars: AGB and post-AGB stars: magnetic field white-dwarfs X-rays: stars |
Title | Searching for X-ray emission from AGB stars |
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