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Cited article:

Multifluid and Kinetic 2D and 3D Simulations of Thermal Farley–Buneman Instability Turbulence in the Solar Chromosphere

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The Astrophysical Journal 986 (1) 23 (2025)
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Multifluid Simulation of Solar Chromospheric Turbulence and Heating Due to Thermal Farley–Buneman Instability

Samuel Evans, Meers Oppenheim, Juan Martínez-Sykora, Yakov Dimant and Richard Xiao
The Astrophysical Journal 949 (2) 59 (2023)
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Unified fluid theory of the collisional thermal Farley–Buneman instability including magnetized multi-species ions

Y. S. Dimant, M. M. Oppenheim, S. Evans and J. Martinez-Sykora
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Theory of Fluid Instabilities in Partially Ionized Plasmas: An Overview

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Frontiers in Astronomy and Space Sciences 9 (2022)
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Topics in Magnetohydrodynamic Topology, Reconnection and Stability Theory

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CISM International Centre for Mechanical Sciences, Topics in Magnetohydrodynamic Topology, Reconnection and Stability Theory 591 69 (2020)
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Newly Discovered Source of Turbulence and Heating in the Solar Chromosphere

Meers Oppenheim, Yakov Dimant, William Longley and Alex C. Fletcher
The Astrophysical Journal Letters 891 (1) L9 (2020)
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Effects of Ion Magnetization on the Farley–Buneman Instability in the Solar Chromosphere

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The Astrophysical Journal 857 (2) 129 (2018)
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Generation of electric fields and currents by neutral flows in weakly ionized plasmas through collisional dynamos

Y. S. Dimant, M. M. Oppenheim and A. C. Fletcher
Physics of Plasmas 23 (8) (2016)
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Ionized Plasma and Neutral Gas Coupling in the Sun’s Chromosphere and Earth’s Ionosphere/Thermosphere

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Space Science Reviews 184 (1-4) 107 (2014)
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Electrostatic plasma instabilities driven by neutral gas flows in the solar chromosphere

G. Gogoberidze, Y. Voitenko, S. Poedts and J. De Keyser
Monthly Notices of the Royal Astronomical Society 438 (4) 3568 (2014)
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THE MULTI-SPECIES FARLEY-BUNEMAN INSTABILITY IN THE SOLAR CHROMOSPHERE

Chad A. Madsen, Yakov S. Dimant, Meers M. Oppenheim and Juan M. Fontenla
The Astrophysical Journal 783 (2) 128 (2014)
https://doi.org/10.1088/0004-637X/783/2/128

The ion-acoustic instability in the pre-flare plasma near the loop footpoints at solar active regions

A. Kryshtal, S. Gerasimenko, A. Voitsekhovska and V. Fedun
Annales Geophysicae 31 (12) 2193 (2013)
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Self-heating and its possible relationship to chromospheric heating in slowly rotating stars

Andria Rogava, Zaza Osmanov and Stefaan Poedts
Monthly Notices of the Royal Astronomical Society (2010)
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Models of the Solar Chromosphere and Transition Region from SUMER and HRTS Observations: Formation of the Extreme‐Ultraviolet Spectrum of Hydrogen, Carbon, and Oxygen

Eugene H. Avrett and Rudolf Loeser
The Astrophysical Journal Supplement Series 175 (1) 229 (2008)
https://doi.org/10.1086/523671

Log-normal intensity distribution of the quiet-Sun FUV continuum observed by SUMER

J. M. Fontenla, W. Curdt, E. H. Avrett and J. Harder
Astronomy & Astrophysics 468 (2) 695 (2007)
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Semiempirical Models of the Solar Atmosphere. II. The Quiet‐Sun Low Chromosphere at Moderate Resolution

J. M. Fontenla, K. S. Balasubramaniam and J. Harder
The Astrophysical Journal 667 (2) 1243 (2007)
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Semiempirical Models of the Solar Atmosphere. I. The Quiet‐ and Active Sun Photosphere at Moderate Resolution

J. M. Fontenla, E. Avrett, G. Thuillier and J. Harder
The Astrophysical Journal 639 (1) 441 (2006)
https://doi.org/10.1086/499345