Turbulence in giant molecular clouds: the effect of photoionization feedback

Boneberg, D.~M., Girichidis, P., Ercolano, B. and Dale, James (2015) Turbulence in giant molecular clouds: the effect of photoionization feedback. Monthly Notices of the Royal Astronomical Society (MNRAS), 447 (2). pp. 1341-1352. ISSN 0035-8711
Copy

Giant molecular clouds (GMCs) are observed to be turbulent, but theory shows that without a driving mechanism turbulence should quickly decay. The question arises by which mechanisms turbulence is driven or sustained. It has been shown that photoionizing feedback from massive stars has an impact on the surrounding GMC and can for example create vast H II bubbles. We therefore address the question of whether turbulence is a consequence of this effect of feedback on the cloud. To investigate this, we analyse the velocity field of simulations of high-mass star-forming regions by studying velocity structure functions and power spectra. We find that clouds whose morphology is strongly affected by photoionizing feedback also show evidence of driving of turbulence by preserving or recovering a Kolmogorov-type velocity field. On the contrary, control run simulations without photoionizing feedback have a velocity distribution that bears the signature of gravitational collapse and of the dissipation of energy, where the initial Kolmogorov-type structure function is erased.


picture_as_pdf
Published_Version.pdf
subject
Published Version

View Download

EndNote BibTeX Reference Manager Refer Atom Dublin Core METS MPEG-21 DIDL ASCII Citation HTML Citation OpenURL ContextObject in Span RIOXX2 XML OpenURL ContextObject Data Cite XML MODS
Export

Downloads
?