Outflow forces in intermediate mass star formation
T.A. van Kempen, M.R. Hogerheijde, E.F. van Dishoeck, L.E. Kristensen,, A. Belloche, P.D. Klaassen, S. Leurini, I. San Jose-Garcia, A. Aykutalp, Y., Choi, A. Endo, W. Frieswijk, D. Harsono, A. Karska, E. Koumpia, N. van der, Marel, Z. Nagy, J.P. Perez-Beaupuits, C. Risacher

TL;DR
This study derives outflow forces from six intermediate mass protostars using CO 6--5 observations, validating the correlation with luminosity and examining the influence of fragmentation on star formation processes.
Contribution
It provides new outflow force measurements for intermediate mass protostars using improved methods and compares them with previous studies to assess fragmentation effects.
Findings
Temperatures >50 K in all outflows.
No clear evidence that fragmentation enhances outflow forces.
Outflow forces align with low-mass protostar results when using similar techniques.
Abstract
Intermediate mass protostarsprovide a bridge between theories of low- and high-mass star formation. Emerging molecular outflows can be used to determine the influence of fragmentation and multiplicity on protostellar evolution through the correlation of outflow forces of intermediate mass protostars with the luminosity. The aim of this paper is to derive outflow forces from outflows of six intermediate mass protostellar regions and validate the apparent correlation between total luminosity and outflow force seen in earlier work, as well as remove uncertainties caused by different methodology. By comparing CO 6--5 observations obtained with APEX with non-LTE radiative transfer model predictions, optical depths, temperatures, densities of the gas of the molecular outflows are derived. Outflow forces, dynamical timescales and kinetic luminosities are subsequently calculated. Outflow…
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