A molecular-line study of the interstellar bullet engine IRAS 05506+2414
Raghvendra Sahai, Chin-Fei Lee, Carmen Sanchez Contreras, Nimesh, Patel, Mark R. Morris, and Mark Claussen

TL;DR
This study investigates the complex molecular outflows in IRAS 05506+2414, revealing a pseudo-disk and multiple outflows with different velocities and sizes, suggesting a dynamic and possibly explosive star formation process distinct from classical models.
Contribution
The paper provides detailed interferometric and single-dish observations of IRAS 05506+2414, identifying multiple outflows and a pseudo-disk, and discusses various models explaining its explosive outflow mechanism.
Findings
Identification of a large pseudo-disk with a central stellar mass of 8-19 Msun.
Detection of three distinct molecular outflows with different velocities and sizes.
Evidence suggesting the outflows are dynamically linked and possibly explosive in origin.
Abstract
We present interferometric and single-dish molecular line observations of the interstellar bullet-outflow source IRAS 05506+2414, whose wide-angle bullet spray is similar to the Orion BN/KL explosive outflow and likely arises from an entirely different mechanism than the classical accretion-disk-driven bipolar flows in young stellar objects. The bullet-outflow source is associated with a large pseudo-disk and three molecular outflows -- a high-velocity outflow (HVO), a medium-velocity outflow (MVO), and a slow, extended outflow (SEO). The size (mass) of the pseudo-disk is 10,350 AU x 6,400 AU (0.64-0.17 Msun); from a model-fit assuming infall and rotation we derive a central stellar mass of 8--19 Msun. The HVO (MVO) has an angular size ~5180 (~3330) AU, and a projected outflow velocity of ~140 km/s (~30 km/s). The SEO size (outflow speed) is ~0.9 pc (~6 km/s). The HVO's axis is aligned…
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