Striations, integrals, hourglasses, and collapse - thermal instability driven magnetic simulations of molecular clouds

被引:2
作者
Wareing, C. J. [1 ]
Pittard, J. M. [1 ]
Falle, S. A. E. G. [2 ]
机构
[1] Univ Leeds, Sch Phys & Astron, Leeds LS2 9JT, W Yorkshire, England
[2] Univ Leeds, Sch Math, Leeds LS2 9JT, W Yorkshire, England
基金
英国科学技术设施理事会;
关键词
MHD; methods: numerical; stars: formation; ISM: clouds; ISM: magnetic fields; ISM: structure; MECHANICAL STELLAR FEEDBACK; INTERSTELLAR CLOUDS; NONHOMOLOGOUS CONTRACTION; INTERCLOUD MEDIUM; STAR-FORMATION; FIELDS; TURBULENCE; GAS; POLARIZATION; EQUILIBRIA;
D O I
10.1093/mnras/staa3440
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The MHD version of the adaptive mesh refinement (AMR) code, MG, has been employed to study the interaction of thermal instability, magnetic fields, and gravity through 3D simulations of the formation of collapsing cold clumps on the scale of a few parsecs, inside a larger molecular cloud. The diffuse atomic initial condition consists of a stationary, thermally unstable, spherical cloud in pressure equilibrium with lower density surroundings and threaded by a uniform magnetic field. This cloud was seeded with 10 per cent density perturbations at the finest initial grid level around n = 1.1 cm(-3) and evolved with self-gravity included from the outset. Several cloud diameters were considered (100, 200, and 400 pc) equating to several cloud masses (17 000, 136 000, and 1.1 x 10(6) M-circle dot). Low-density magnetic-field-aligned striations were observed as the clouds collapse along the field lines into disc-like structures. The induced flow along field lines leads to oscillations of the sheet about the gravitational minimum and an integral-shaped appearance. When magnetically supercritical, the clouds then collapse and generate hourglass magnetic field configurations with strongly intensified magnetic fields, reproducing observational behaviour. Resimulation of a region of the highest mass cloud at higher resolution forms gravitationally bound collapsing clumps within the sheet that contain clump-frame supersonic (M similar to 5) and super-Alfvenic (M-A similar to 4) velocities. Observationally realistic density and velocity power spectra of the cloud and densest clump are obtained. Future work will use these realistic initial conditions to study individual star and cluster feedback.
引用
收藏
页码:2831 / 2849
页数:19
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