Generation of galactic disc warps due to intergalactic accretion flows onto the disc

被引:78
作者
López-Corredoira, M
Betancort-Rijo, J
Beckman, JE
机构
[1] Univ Basel, Astron Inst, CH-4102 Binningen, Switzerland
[2] Inst Astrofis Canarias, Tenerife 38200, Spain
[3] Univ La Laguna, Dept Astrofis, Tenerife, Spain
[4] CSIC, Madrid, Spain
关键词
galaxies : structure; galaxy : structure; galaxies : interactions; galaxies : kinematic and dynamics; galaxies : magnetic fields;
D O I
10.1051/0004-6361:20020229
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
A new method is developed to calculate the amplitude of the galactic warps generated by a torque due to external forces. This takes into account that the warp is produced as a reorientation of the different rings which constitute the disc in order to compensate the differential precession generated by the external force, yielding a uniform asymptotic precession for all rings. Application of this method to gravitational tidal forces in the Milky Way due to the Magellanic Clouds leads to a very low amplitude of the warp, as has been inferred in previous studies; so, tidal forces are unlikely to generate warps, at least in the Milky Way. If the force were due to an extragalactic magnetic field, its intensity would have to be very high, greater than 1 muG, to generate the observed warps. An alternative hypothesis is explored: the accretion of the intergalactic medium over the disk. A cup-shaped distortion is expected, due to the transmission of the linear momentum; but, this effect is small and the predominant effect turns out to be the transmission of angular momentum, i.e. a torque giving an integral-sign shape warp. The torque produced by a flow of velocity similar to100 km s(-1) and baryon density similar to10(-25) kg/m(3) is enough to generate the observed warps and this mechanism offers quite a plausible explanation. First, because this order of accretion rate is inferred from other processes observed in the Galaxy, notably its chemical evolution. The inferred rate of infall of matter, similar to1 M./yr, to the Galactic disc that this theory predicts agrees with the quantitative predictions of this chemical evolution resolving key issues, notably the G-dwarf problem. Second, the required density of the intergalactic medium is within the range of values compatible with observation. By this mechanism, we can explain the warp phenomenon in terms of intergalactic accretion flows onto the disk of the galaxy.
引用
收藏
页码:169 / 186
页数:18
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