English

What are we learning from the relative orientation between density structures and the magnetic field in molecular clouds?

Astrophysics of Galaxies 2017-11-01 v1

Abstract

We investigate the conditions of ideal magnetohydrodynamic (MHD) turbulence responsible for the relative orientation between density structures, characterized by their gradient, ρ\vec{\nabla}\rho, and the magnetic field, B\vec{B}, in molecular clouds (MCs). For that purpose, we construct an expression for the time evolution of the angle, ϕ\phi, between ρ\vec{\nabla}\rho and B\vec{B} based on the transport equations of MHD turbulence. Using this expression, we find that the configuration where ρ\vec{\nabla}\rho and B\vec{B} are mostly parallel, cosϕ=1\cos\phi=1, and where ρ\vec{\nabla}\rho and B\vec{B} are mostly perpendicular, cosϕ=0\cos\phi=0, constitute attractors, that is, the system tends to evolve towards either of these configurations and they are more represented than others. This fact would explain the predominant alignment or anti-alignment between column density, NHN_H, structures and the projected magnetic field orientation, B^\hat{B}_\perp, reported in observations. Additionally, we find that departures from the cosϕ=0\cos\phi=0 configurations are related to convergent flows, quantified by the divergence of the velocity field, v\vec{\nabla}\cdot\vec{v}, in the presence of a relatively strong magnetic field. This would explain the observed change in relative orientation between NHN_H-structures and B^\hat{B}_\perp towards MCs, from mostly parallel at low NHN_H to mostly perpendicular at the highest NHN_H, as the result of the gravitational collapse and/or convergence of flows. Finally, we show that the density threshold that marks the observed change in relative orientation towards MCs, from NHN_H and B^\hat{B}_\perp being mostly parallel at low NHN_H to mostly perpendicular at the highest NHN_H, is related to the magnetic field strength and constitutes a crucial piece of information for determining the role of the magnetic field in the dynamics of MCs.

Keywords

Cite

@article{arxiv.1705.00477,
  title  = {What are we learning from the relative orientation between density structures and the magnetic field in molecular clouds?},
  author = {Juan D. Soler and Patrick Hennebelle},
  journal= {arXiv preprint arXiv:1705.00477},
  year   = {2017}
}

Comments

10 pages, 8 figures. Submitted to A&A