Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision

In this research, an analytical expression of the Weibel electromagnetic instability growth rate is investigated for strongly coupled plasma in the presence of Coulomb collisions in the beam-plasma interaction under a low-frequency wave condition. In this regard, the distribution function governing...

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Main Authors: Fatemeh Nejadtaghi, Mohammad Mahdavi, Saeed Hassan pour, Hengameh Khanzadeh, Ali Tavassoli
Format: Article
Language:English
Published: Damghan university 2024-12-01
Series:Iranian Journal of Astronomy and Astrophysics
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Online Access:https://ijaa.du.ac.ir/article_453_109ddb1335a6b18afaa89bef2d914356.pdf
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author Fatemeh Nejadtaghi
Mohammad Mahdavi
Saeed Hassan pour
Hengameh Khanzadeh
Ali Tavassoli
author_facet Fatemeh Nejadtaghi
Mohammad Mahdavi
Saeed Hassan pour
Hengameh Khanzadeh
Ali Tavassoli
author_sort Fatemeh Nejadtaghi
collection DOAJ
description In this research, an analytical expression of the Weibel electromagnetic instability growth rate is investigated for strongly coupled plasma in the presence of Coulomb collisions in the beam-plasma interaction under a low-frequency wave condition. In this regard, the distribution function governing the relativistic beam and plasma particles have been considered as semi-Maxwellian and Kappa distribution functions respectively. The effect of the temperature anisotropy parameter, the spectral index, quantum and relativistic parameters on Weibel electromagnetic instability growth rate have been investigated in collisional and non-collisional states. The obtained results show that the Coulomb collision frequency of particles plays an important role in suppressing the unstable modes in isotropic plasmas due to increase in the free energy of the plasma. Therefore, it was concluded that the Weibel instability growth rate in collision state has a more stable situation than in the non-collisional state in the strongly coupled plasma with Kappa distribution function.
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id doaj-art-5b672a1b166245a4a513ef410e1c8485
institution Kabale University
issn 2322-4924
2383-403X
language English
publishDate 2024-12-01
publisher Damghan university
record_format Article
series Iranian Journal of Astronomy and Astrophysics
spelling doaj-art-5b672a1b166245a4a513ef410e1c84852025-01-08T06:27:15ZengDamghan universityIranian Journal of Astronomy and Astrophysics2322-49242383-403X2024-12-0111319320310.22128/ijaa.2024.904.1196453Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb CollisionFatemeh Nejadtaghi0Mohammad Mahdavi1Saeed Hassan pour2Hengameh Khanzadeh3Ali Tavassoli4Department of Physics, Faculty of Basic Sciences, Nour Branch, Islamic Azad University, Nour, IranDepartment of Nuclear Physics, Faculty of Science, University of Mazandaran, P. O. Box 47416-95447, Babolsar, IranDepartment of Physics, Faculty of Basic Sciences, Nour Branch, Islamic Azad University, Nour, IranDepartment of Nuclear Physics, Faculty of Science, University of Mazandaran, P. O. Box 47416-95447, Babolsar, IranDepartment of Physics, Faculty of Basic Sciences, Nour Branch, Islamic Azad University, Nour, IranIn this research, an analytical expression of the Weibel electromagnetic instability growth rate is investigated for strongly coupled plasma in the presence of Coulomb collisions in the beam-plasma interaction under a low-frequency wave condition. In this regard, the distribution function governing the relativistic beam and plasma particles have been considered as semi-Maxwellian and Kappa distribution functions respectively. The effect of the temperature anisotropy parameter, the spectral index, quantum and relativistic parameters on Weibel electromagnetic instability growth rate have been investigated in collisional and non-collisional states. The obtained results show that the Coulomb collision frequency of particles plays an important role in suppressing the unstable modes in isotropic plasmas due to increase in the free energy of the plasma. Therefore, it was concluded that the Weibel instability growth rate in collision state has a more stable situation than in the non-collisional state in the strongly coupled plasma with Kappa distribution function.https://ijaa.du.ac.ir/article_453_109ddb1335a6b18afaa89bef2d914356.pdfweibel electromagnetic instabilitycoulomb collisionkappa distribution functiontemperature anisotropy
spellingShingle Fatemeh Nejadtaghi
Mohammad Mahdavi
Saeed Hassan pour
Hengameh Khanzadeh
Ali Tavassoli
Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision
Iranian Journal of Astronomy and Astrophysics
weibel electromagnetic instability
coulomb collision
kappa distribution function
temperature anisotropy
title Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision
title_full Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision
title_fullStr Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision
title_full_unstemmed Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision
title_short Electromagnetic Instability in Plasma with Kappa Distribution Function in the Presence of Coulomb Collision
title_sort electromagnetic instability in plasma with kappa distribution function in the presence of coulomb collision
topic weibel electromagnetic instability
coulomb collision
kappa distribution function
temperature anisotropy
url https://ijaa.du.ac.ir/article_453_109ddb1335a6b18afaa89bef2d914356.pdf
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AT saeedhassanpour electromagneticinstabilityinplasmawithkappadistributionfunctioninthepresenceofcoulombcollision
AT hengamehkhanzadeh electromagneticinstabilityinplasmawithkappadistributionfunctioninthepresenceofcoulombcollision
AT alitavassoli electromagneticinstabilityinplasmawithkappadistributionfunctioninthepresenceofcoulombcollision