Observations of pores and surrounding regions with CO 4.66 {\mu}m lines by BBSO/CYRA
Yongliang Song, Xianyong Bai, Xu Yang, Wenda Cao, Han Uitenbroek,, Yuanyong Deng, Xin Li, Xiao Yang, and Mei Zhang

TL;DR
This study combines high-resolution solar observations and 3D MHD simulations to analyze CO line features in various solar regions, revealing the magnetic field's role in forming cold plasma structures called cold bubbles.
Contribution
First comparison of CO 4.66 μm line observations with 3D MHD simulations, demonstrating magnetic influence on cold plasma structures in the solar chromosphere.
Findings
Cold bubbles are found in quiet-Sun and magnetic regions.
Magnetic fields influence CO line intensity and cold bubble formation.
Simulations reproduce observed cold plasma features near magnetic fields.
Abstract
Solar observations of carbon monoxide (CO) indicate the existence of lower-temperature gas in the lower solar chromosphere. We present an observation of pores, and quiet-Sun, and network magnetic field regions with CO 4.66 {\mu}m lines by the Cryogenic Infrared Spectrograph (CYRA) at Big Bear Solar Observatory. We used the strong CO lines at around 4.66 {\mu}m to understand the properties of the thermal structures of lower solar atmosphere in different solar features with various magnetic field strengths. AIA 1700 {\AA} images, HMI continuum images and magnetograms are also included in the observation. The data from 3D radiation magnetohydrodynamic (MHD) simulation with the Bifrost code are also employed for the first time to be compared with the observation. We used the RH code to synthesize the CO line profiles in the network regions. The CO 3-2 R14 line center intensity changes to be…
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Taxonomy
TopicsHydrocarbon exploration and reservoir analysis · Atmospheric and Environmental Gas Dynamics · Spectroscopy and Laser Applications
