SOFIA FEEDBACK Survey: The Pillars of Creation in [C II] and Molecular Lines
Ramsey L. Karim, Marc W. Pound, Alexander G.G.M. Tielens, Maitraiyee Tiwari, Lars Bonne, Mark G. Wolfire, Nicola Schneider, \"Umit Kavak, Lee G. Mundy, Robert Simon, Rolf G\"usten, J\"urgen Stutzki, Friedrich Wyrowski, Netty Honingh

TL;DR
This study uses SOFIA FEEDBACK observations to analyze the physical structure, conditions, and kinematics of the Pillars of Creation, revealing their pressure equilibrium, magnetic support, and potential for collapse.
Contribution
It provides the first detailed physical and kinematic analysis of the Pillars of Creation using velocity-resolved [C II] and molecular line data, highlighting magnetic support and collapse prospects.
Findings
Molecular gas density ~1.3 x 10^5 cm^-3
Atomic gas density ~1.8 x 10^4 cm^-3
Pillars are in pressure equilibrium and magnetically supported
Abstract
We investigate the physical structure and conditions of photodissociation regions (PDRs) and molecular gas within the Pillars of Creation in the Eagle Nebula using SOFIA FEEDBACK observations of the [C II] 158 micron line. These observations are velocity resolved to 0.5 km s and are analyzed alongside a collection of complimentary data with similar spatial and spectral resolution: the [O I] 63 micron line, also observed with SOFIA, and rotational lines of CO, HCN, HCO, CS, and NH. Using the superb spectral resolution of SOFIA, APEX, CARMA, and BIMA, we reveal the relationships between the warm PDR and cool molecular gas layers in context of the Pillars' kinematic structure. We assemble a geometric picture of the Pillars and their surroundings informed by illumination patterns and kinematic relationships and derive physical conditions in the PDRs associated with…
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Taxonomy
TopicsAstro and Planetary Science · Stellar, planetary, and galactic studies · Astrophysics and Star Formation Studies
