STARBENCH: the D-type expansion of an H II region

Bisbas, T.~G., Haworth, T.~J., Williams, R.~J.~R., Mackey, J., Tremblin, P., Raga, A.~C., Arthur, S.~J., Baczynski, C., Frostholm, T., Geen, S., Haugbølle, T., Hubber, D., Iliev, I.~T., Kuiper, R., Rosdahl, J., Sullivan, D., Walch, S., Wünsch, R. and Dale, James (2015) STARBENCH: the D-type expansion of an H II region. Monthly Notices of the Royal Astronomical Society (MNRAS), 453 (2). pp. 1324-1343. ISSN 0035-8711
Copy

STARBENCH is a project focused on benchmarking and validating different star formation and stellar feedback codes. In this first STARBENCH paper we perform a comparison study of the D-type expansion of an H II region. The aim of this work is to understand the differences observed between the 12 participating numerical codes against the various analytical expressions examining the D-type phase of H II region expansion. To do this, we propose two well-defined tests which are tackled by 1D and 3D grid- and smoothed particle hydrodynamics-based codes. The first test examines the ‘early phase’ D-type scenario during which the mechanical pressure driving the expansion is significantly larger than the thermal pressure of the neutral medium. The second test examines the ‘late phase’ D-type scenario during which the system relaxes to pressure equilibrium with the external medium. Although they are mutually in excellent agreement, all 12 participating codes follow a modified expansion law that deviates significantly from the classical Spitzer solution in both scenarios. We present a semi-empirical formula combining the two different solutions appropriate to both early and late phases that agrees with high-resolution simulations to ≲ 2 per cent. This formula provides a much better benchmark solution for code validation than the Spitzer solution. The present comparison has validated the participating codes and through this project we provide a data set for calibrating the treatment of ionizing radiation hydrodynamics codes.


picture_as_pdf
Published_Version.pdf
subject
Published Version

View Download

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

Downloads