Adventures of a tidally induced bar

Abstract : Using N-body simulations, we study the properties of a bar induced in a discy dwarf galaxy as a result of tidal interaction with the Milky Way. The bar forms at the first pericentre passage and survives until the end of the evolution at 10 Gyr. Fourier decomposition of the bar reveals that only even modes are significant and preserve a hierarchy so that the bar mode is always the strongest. They show a characteristic profile with a maximum, similar to simulated bars forming in isolated galaxies and observed bars in real galaxies. We adopt the maximum of the bar mode as a measure of the bar strength and we estimate the bar length by comparing the density profiles along the bar and perpendicular to it. The bar strength and the bar length decrease with time, mainly at pericentres, as a result of tidal torques acting at those times and not to secular evolution. The pattern speed of the bar varies significantly on a time-scale of 1 Gyr and is controlled by the orientation of the tidal torque from the Milky Way. The bar is never tidally locked, but we discover a hint of a 5/2 orbital resonance between the third and fourth pericentre passage. The speed of the bar decreases in the long run so that the bar changes from initially rather fast to slow in the later stages. The boxy/peanut shape is present for some time and its occurrence is preceded by a short period of buckling instability.
Document type :
Journal articles
Complete list of metadatas

https://hal.archives-ouvertes.fr/hal-01442012
Contributor : Catherine Beaussier <>
Submitted on : Friday, January 20, 2017 - 1:27:09 PM
Last modification on : Thursday, July 25, 2019 - 4:34:14 PM

Links full text

Identifiers

Collections

Citation

E. L. Lokas, E. Athanassoula, V. P. Debattista, M. Valluri, A. Pino, et al.. Adventures of a tidally induced bar. Monthly Notices of the Royal Astronomical Society, Oxford University Press (OUP): Policy P - Oxford Open Option A, 2014, 445 (2), pp.1339--1350. ⟨10.1093/mnras/stu1846⟩. ⟨hal-01442012⟩

Share

Metrics

Record views

71