most cited[C II]-deficit caused by self-absorption in an ionized carbon-filled bubble in RCW79

3 citations · 7 across the 4 of their papers we have counts for

collaborators

7 papers

astro-ph.GA2025

SOFIA FEEDBACK Survey: The Eagle Nebula in [C II] and Molecular Lines

Ramsey L. Karim, Marc W. Pound, Alexander G. G. M. Tielens +15

We characterize the physical conditions and energy budget of the M16 H II region using SOFIA FEEDBACK observations of the [C II] 158 m line. The O stars in the $\sim 10^{4}~{\rm…

astro-ph.GA20253 cited

The Diamond Ring in Cygnus X: Advanced stage of an expanding bubble of ionised carbon

Simon M. Dannhauer, Sebastian Vider, Nicola Schneider +18

The "Diamond Ring" in Cygnus X, southwest of the DR21 ridge, is a nearly circular structure of 6 pc in diameter, prominent in FIR emission and enclosed by clumpy molecular cl…

astro-ph.GA2025

The HI-to-H2 transition in the Draco cloud

Nicola Schneider, Volker Ossenkopf-Okada, Markus Roellig +7

In recent decades, significant attention has been dedicated to analytical and observational studies of the atomic hydrogen (HI) to molecular hydrogen (H2) transition in the interst…

astro-ph.GA2025

Expansion Signatures in 35 HII Regions traced by SOFIA [CII] Emission

Timothy Faerber, Loren D. Anderson, Matteo Luisi +6

We analyze the expansion signatures of 35 HII regions mapped in [CII] 158 micron emission by the Stratospheric Observatory for Infrared Astronomy (SOFIA). The [CII] emission primar…

astro-ph.GA20253 cited

[C II]-deficit caused by self-absorption in an ionized carbon-filled bubble in RCW79

Eduard Keilmann, Simon Dannhauer, Slawa Kabanovic +12

Recent spectroscopic observations of the [C II] 158 fine-structure line of ionized carbon (C), using the Stratospheric Observatory for Infrared Astronomy (SOFIA)…

astro-ph.GA2025

Cool dark gas in Cygnus X: The first large-scale mapping of low-frequency carbon recombination lines

Kimberly L. Emig, Pedro Salas, Loren D. Anderson +14

Understanding the transition from atomic gas to molecular gas is critical to explain the formation and evolution of molecular clouds. However, the gas phases involved, cold HI and…