English

The spectrum of magnetized turbulence in the interstellar medium

Astrophysics of Galaxies 2025-05-15 v1 Solar and Stellar Astrophysics Chaotic Dynamics Computational Physics

Abstract

The interstellar medium (ISM) of our Galaxy is magnetized, compressible and turbulent, influencing many key ISM properties, like star formation, cosmic ray transport, and metal and phase mixing. Yet, basic statistics describing compressible, magnetized turbulence remain uncertain. Utilizing grid resolutions up to 10,080310,080^3 cells, we simulate highly-compressible, magnetized ISM-style turbulence with a magnetic field maintained by a small-scale dynamo. We measure two coexisting kinetic energy cascades, Ekin(k)kn\mathcal{E}_{{\rm kin}}(k) \propto k^{-n}, in the turbulence, separating the plasma into scales that are non-locally interacting, supersonic and weakly magnetized (n=2.01±0.032)(n=2.01\pm 0.03\approx 2) and locally interacting, subsonic and highly magnetized (n=1.465±0.0023/2)(n=1.465\pm 0.002\approx 3/2), where kk is the wavenumber. We show that the 3/23/2 spectrum can be explained with scale-dependent kinetic energy fluxes and velocity-magnetic field alignment. On the highly magnetized modes, the magnetic energy spectrum forms a local cascade (n=1.798±0.0019/5)(n=1.798\pm 0.001\approx 9/5), deviating from any known \textit{ab initio} theory. With a new generation of radio telescopes coming online, these results provide a means to directly test if the ISM in our Galaxy is maintained by the compressible turbulent motions from within it.

Keywords

Cite

@article{arxiv.2504.07136,
  title  = {The spectrum of magnetized turbulence in the interstellar medium},
  author = {James R. Beattie and Christoph Federrath and Ralf S. Klessen and Salvatore Cielo and Amitava Bhattacharjee},
  journal= {arXiv preprint arXiv:2504.07136},
  year   = {2025}
}

Comments

8 pages main text. 24 pages total. 3 main text figure. 7 figures total. arXiv admin note: substantial text overlap with arXiv:2405.16626