Space as a spectroscopic laboratory: High-resolution spectroscopy of the [C II] hyperfine structure with SOFIA/upGREAT
arXiv:2605.07995 · doi:10.1051/0004-6361/202659546
Abstract
The [C II] emission at 158 m is a key cooling line of the interstellar medium and traces gas kinematics in spectrally resolved observations. Its spectral profile is often modified by optical depth effects. The intrinsic line shape can be reconstructed by comparison with emission from the less abundant C isotope. Due to the additional neutron spin, [C II] emission splits into three hyperfine structure (hfs) transitions. Laboratory measurements have provided the centroid frequency and the strongest component (); the two weaker components ( and ) have been inferred only from quantum-mechanical calculations. The magnetic-dipole hfs constants, from which the transition frequencies follow, have not been measured experimentally. The high spectral resolution of observations with the upgraded German Receiver for Astronomy at Terahertz Frequencies (upGREAT) on board SOFIA enabled simultaneous detection of all three hfs transitions. From these astronomical data we determine, for the first time, the magnetic-dipole hfs constants MHz and MHz of the [C II] ground term. Combined with the laboratory centroid frequency, this yields the rest frequencies of all three hfs lines. Using [C II] as a reference, we also improve the precision of the [C II] centroid frequency. This work shows that spectrally resolved astronomical observations can constrain fundamental atomic properties, with hfs precision rivaling laboratory measurements. The approach extends to other atomic and molecular transitions where laboratory data are difficult to obtain.
References in corpus (12)
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- GREAT: the SOFIA high-frequency heterodyne instrument
- The upGREAT dual frequency heterodyne arrays for SOFIA
- Expanding bubbles in Orion A: [CII] observations of M42, M43, and NGC 1977
- SOFIA FEEDBACK survey: exploring the dynamics of the stellar wind driven shell of RCW 49
- Self-absorption in [CII], CO, and HI in RCW120. Building up a geometrical and physical model of the region
- FEEDBACK from the NGC7538 HII region
- The SOFIA FEEDBACK Legacy Survey: Dynamics and mass ejection in the bipolar HII region RCW 36
- Observation and calibration strategies for large-scale multi-beam velocity-resolved mapping of the [CII] emission in the Orion molecular cloud
- First detection of [13CII] in the Large Magellanic Cloud
- Critically Evaluated Spectral Data for Singly Ionized Carbon (C II)
- The [OI] fine structure line profiles in Mon R2 and M17 SW: the puzzling nature of cold foreground material identified by [12CII] self-absorption