Effects of galaxy–satellite interactions on bar formation
Aims. We aim to show how encounters with low-mass satellite galaxies may alter the bar formation in a Milky Way-like disc galaxy. Methods. We use high-resolution N-body simulations of a disc galaxy prone to mild bar instability. For realistic initial conditions of satellites, we take advantage of co...
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Published in | Astronomy and astrophysics (Berlin) Vol. 604; p. A75 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Heidelberg
EDP Sciences
01.08.2017
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Subjects | |
Online Access | Get full text |
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Summary: | Aims. We aim to show how encounters with low-mass satellite galaxies may alter the bar formation in a Milky Way-like disc galaxy. Methods. We use high-resolution N-body simulations of a disc galaxy prone to mild bar instability. For realistic initial conditions of satellites, we take advantage of cosmological simulations of Milky Way-like dark matter haloes. Results. The satellites may have a significant impact on the time of bar formation. Some runs with satellites demonstrate a delay, while others show an advancement in bar formation compared to the isolated run, with such time differences reaching ~1 Gyr. Meanwhile, the final bar configuration, including its very appearance and the bar characteristics such as the pattern speed and the exponential growth rate of its amplitude are independent of the number of encounters and their orbits. The contribution of satellites with masses below 109M⊙ is insignificant, unless their pericentre distances are small. We suggest that the encounters act indirectly via inducing perturbations across the disc that evolve to delayed waves in the central part and interfere with an emerging seed bar. The predicted effect for the present-day host galaxy is expected to be even more significant at redshifts z ≳ 0.5. |
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Bibliography: | bibcode:2017A%26A...604A..75M publisher-ID:aa30024-16 dkey:10.1051/0004-6361/201630024 istex:C3BF4FA09DA4899C19947A63673A0C85914886B4 ark:/67375/80W-BJ4JGN1T-Z Fellow of the International Max Planck Research School for Astronomy and Cosmic Physics at the University of Heidelberg (IMPRS-HD). |
ISSN: | 0004-6361 1432-0746 |
DOI: | 10.1051/0004-6361/201630024 |