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Magnetothermal condensation modes including the effects of charged dust particles
Authors:Mohsen Shadmehri   Sami Dib
Affiliation:Department of Mathematical Physics, National University Ireland, Co Kildare, Maynooth, Ireland;Service d'Astrophysique, CEA/DSM/DAPNIA/SAp, CEA/Saclay, 91191 Gif-sur-Yvette Cedex, France;Department of Physics, Faculty of Sciences, Lebanese University, El Hadath, Beirut, Lebanon
Abstract:We study thermal instability in a magnetized and partially ionized plasma with charged dust particles. Our linear analysis shows that the growth rate of the unstable modes in the presence of dust particles strongly depends on the ratio of the cooling rate and the modified dust-cyclotron frequency. If the cooling rate is less than the modified dust-cyclotron frequency, then the growth rate of the condensation modes does not modify due to the existence of the charged dust particles. But, when the cooling rate is greater than (or comparable to) the modified dust-cyclotron frequency, the growth rate of unstable modes increases because of the dust particles. Also, the wavenumber of the perturbations corresponding to the maximum growth rate shifts to the smaller values (larger wavelengths) as the cooling rate becomes larger than the modified dust-cyclotron frequency. We show that the growth rate of the condensation modes increases with the electrical charge of the dust particles.
Keywords:instabilities    stars: formation    ISM: general
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