Solar prominences are formed by partially ionized plasma with inter-particle collision frequencies, which generally warrant magnetohydrodynamic treatment. In this work, we explore the dynamical impacts and observable signatures of two-fluid effects in the parameter regimes when ion-neutral collisions do not fully couple the neutral and charged fluids. We performed 2.5D two-fluid (charge – neutrals) simulations of the Rayleigh-Taylor instability (RTI) at a smoothly changing interface between a solar prominence thread and the corona. The purpose of this study is to deepen our understanding of the RTI and the effects of partial ionization on the development of the RTI using nonlinear two-fluid numerical simulations. Our two-fluid model takes i...
Instability-driven fast magnetic reconnection plays a fundamental role in generating explosive dynam...
To contribute to the understanding of heating and dynamic activity in boundary-driven, low-beta plas...
Aims. In the present study we investigate the nature of the magnetic Rayleigh-Taylor instability app...
We report our results from a set of high-resolution, two-fluid, non-linear simulations of the magnet...
We report on results of high resolution two fluid non-linear simulations of the Rayleigh Taylor Inst...
We study the Rayleigh-Taylor instability (RTI) at a prominence-corona transition region in a non-lin...
Aims. We study the modification of the classical criterion for the linear onset and growth rate of t...
The Kelvin-Helmholtz Instability (KHI) has been observed in the solar atmosphere. Ion-neutral collis...
Context. Recent observations of solar prominences show the presence of turbulent flows that may be c...
The Rayleigh-Taylor instability (RTI) arises whenever two fluids with different densities are arran...
Aims. We aim to investigate the nature of dissipative instability appearing in a prominence planar t...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
Abstract. We study Rayleigh–Taylor instability (RTI) at the coronal–prominence boundary by means of ...
Aims. Solar prominences are large-scale condensations suspended against gravity within the solar atm...
Aims: We investigate the nature of dissipative instability at the boundary (seen here as tangential ...
Instability-driven fast magnetic reconnection plays a fundamental role in generating explosive dynam...
To contribute to the understanding of heating and dynamic activity in boundary-driven, low-beta plas...
Aims. In the present study we investigate the nature of the magnetic Rayleigh-Taylor instability app...
We report our results from a set of high-resolution, two-fluid, non-linear simulations of the magnet...
We report on results of high resolution two fluid non-linear simulations of the Rayleigh Taylor Inst...
We study the Rayleigh-Taylor instability (RTI) at a prominence-corona transition region in a non-lin...
Aims. We study the modification of the classical criterion for the linear onset and growth rate of t...
The Kelvin-Helmholtz Instability (KHI) has been observed in the solar atmosphere. Ion-neutral collis...
Context. Recent observations of solar prominences show the presence of turbulent flows that may be c...
The Rayleigh-Taylor instability (RTI) arises whenever two fluids with different densities are arran...
Aims. We aim to investigate the nature of dissipative instability appearing in a prominence planar t...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
Abstract. We study Rayleigh–Taylor instability (RTI) at the coronal–prominence boundary by means of ...
Aims. Solar prominences are large-scale condensations suspended against gravity within the solar atm...
Aims: We investigate the nature of dissipative instability at the boundary (seen here as tangential ...
Instability-driven fast magnetic reconnection plays a fundamental role in generating explosive dynam...
To contribute to the understanding of heating and dynamic activity in boundary-driven, low-beta plas...
Aims. In the present study we investigate the nature of the magnetic Rayleigh-Taylor instability app...