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Tracing Magnetic Field Morphology Using the Velocity Gradient Technique in the Presence of CO Self-absorption
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Tracing Magnetic Field Morphology Using the Velocity Gradient Technique in the Presence of CO Self-absorption

Cheng-Han Hsieh, Yue Hu, Shih-Ping Lai, Ka Ho Yuen, Sheng-Yuan Liu, Sheng-Yuan Liu, I-Ta Hsieh, Ka Wai HoA. Lazarian
Astrophysical Journal, 卷.873(1), 16
2019

摘要

ISM: magnetic fields ISM: molecules magnetohydrodynamics (MHD) methods: numerical radiative transfer turbulence Astronomy and Astrophysics Space and Planetary Science
Probing magnetic fields in self-gravitating molecular clouds is generally difficult, even with the use of polarimetry. Based on the properties of magnetohydrodynamic turbulence and turbulent reconnection, the velocity gradient technique (VGT) provides a new way of tracing magnetic field orientation and strength based on spectroscopic data. Our study tests the applicability of VGT in various molecular tracers, e.g., 12 CO, 13 CO, and C 18 O. By inspecting synthetic molecular-line maps of CO isotopologs generated through radiative transfer calculations, we show that the VGT can be successfully applied in probing the magnetic field direction in the diffuse inerstellar medium, as well as in self-gravitating molecular clouds.

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https://doi.org/10.3847/1538-4357/ab0376檢視
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