Thermal conduction effects on formation of chromospheric solar tadpole-like jets

Author:

Navarro Anamaría1ORCID,Lora-Clavijo F D1,Murawski K2,Poedts Stefaan3

Affiliation:

1. Grupo de Investigación en Relatividad y Gravitación, Escuela de física, Universidad Industrial de Santander, A.A. 678 Bucaramanga, Colombia

2. Institute of Physics, University of Maria Curie-Skłodowska, Pl. M. Curie-Sklodowskiej 5, PL-20-031 Lublin, Poland

3. Centre for mathematical Plasma Astrophysics, Dept. of Mathematics, KU Leuven, Celestijnenlaan 200B, B-3001 Leuven, Belgium

Abstract

ABSTRACT We measure the effects of non-isotropic thermal conduction on generation of solar chromospheric jets through numerical simulations carried out with the use of one fluid magnetohydrodynamics (MHD) code magnus. Following the work of Srivastava et al. (2018), we consider the atmospheric state with a realistic temperature model and generate the ejection of plasma through a gas pressure driver operating in the top chromosphere. We consider the magnetic field mimicking a flux tube and perform parametric studies by varying the magnetic field strength and the amplitude of the driver. We find that in the case of thermal conduction the triggered jets exhibit a considerably larger energy and mass fluxes and their shapes are more collimated and penetrate more the solar corona than for the ideal MHD equations. Low magnetic fields allow these jets to be more energetic, and larger magnetic fields decrease the enhancement of mass and energy due to the inclusion of the thermal conductivity.

Funder

COLCIENCIAS

UiS

NCN

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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