Study of the spatial association between an active region jet and a nonthermal type~${\rm III}$ radio burst
Sargam M. Mulay, Rohit Sharma, Gherardo Valori, Alberto M. V\'asquez,, Giulio Del Zanna, Helen Mason, Divya Oberoi

TL;DR
This study investigates the spatial relationship between an active region jet and associated nonthermal type III radio bursts, combining imaging, spectroscopic, and magnetic field extrapolation techniques to understand their physical connection.
Contribution
It provides a detailed multi-scale analysis linking the AR jet's source region with open magnetic field structures and type III radio emissions, revealing the magnetic topology involved.
Findings
AR jet velocity approximately 136 km/s
Presence of low-temperature plasma at 2 MK in the jet spire
Correlation between the jet and type III radio burst confirming open magnetic fields
Abstract
We aim to investigate the spatial location of the source of an active region (AR) jet and its relation with associated nonthermal type~III radio emission. An emission measure (EM) method was used to study the thermodynamic nature of the AR jet. The nonthermal type~{\rm III} radio burst observed at meterwavelength was studied using the Murchison Widefield Array (MWA) radio imaging and spectroscopic data. The local configuration of the magnetic field and the connectivity of the source region of the jet with open magnetic field structures was studied using a nonlinear force-free field (NLFFF) extrapolation and potential field source surface (PFSS) extrapolation respectively. The plane-of-sky velocity of the AR jet was found to be 136~km/s. The EM analysis confirmed the presence of low temperature 2~MK plasma for the spire, whereas hot plasma, between 5-8 MK, was present at the…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics · Fluid Dynamics and Turbulent Flows
