The proton and electron temperature anisotropies in the solar wind are constrained by the instability thresholds for temperature-anisotropy-driven kinetic plasma instabilities. The modifications to the marginal instability conditions from accounting for the influence of damping connected with the collisional effects in the solar wind plasma are calculated for right- and left-handed polarized parallel propagating Alfvén waves and mirror and firehose fluctuations. These modifications provide tighter threshold constraints compared to the marginal thresholds but do not fully explain the observations at small values of the parallel plasma beta.status: publishe
Turbulence in space plasmas usually exhibits an energy cascade in which large-scale magnetic fluctua...
The increase of temperature predicted by the solar wind expansion in the direction parallel to the i...
Thefirehose and mirror instabilities are thought to arise in a variety of space and astrophysical pl...
Among the kinetic microinstabilities, the firehose instability is one of the most efficient mechanis...
Using high-resolution data from Solar Orbiter, we investigate the plasma conditions necessary for th...
Introduction Thermalization due to Coulomb relaxation in the solar wind is generally insufficient t...
The in-situ observations of the velocity distributions of the solar wind plasma particles reveal non...
Electromagnetic instabilities in high-β plasmas, where β is the ratio of the kinetic plasma energy t...
© 2015. The American Astronomical Society. All rights reserved.. In diffuse plasmas in space, partic...
The double adiabatic expansion of the nearly collisionless solar wind plasma creates conditions for ...
Beobachtungen im Sonnenwind zeigen, dass in der Parameter-Ebene definiert durch die Anisotropie und ...
Context. Solar outflows are a considerable source of free energy that accumulates in multiple forms ...
We analyse the temperature anisotropy of the protons in the solar wind and thereby concentrate on pl...
We report the first study of the correlation between elevated solar wind core plasma temperatures an...
Two central components are revealed by electron velocity distributions measured in space plasmas, a ...
Turbulence in space plasmas usually exhibits an energy cascade in which large-scale magnetic fluctua...
The increase of temperature predicted by the solar wind expansion in the direction parallel to the i...
Thefirehose and mirror instabilities are thought to arise in a variety of space and astrophysical pl...
Among the kinetic microinstabilities, the firehose instability is one of the most efficient mechanis...
Using high-resolution data from Solar Orbiter, we investigate the plasma conditions necessary for th...
Introduction Thermalization due to Coulomb relaxation in the solar wind is generally insufficient t...
The in-situ observations of the velocity distributions of the solar wind plasma particles reveal non...
Electromagnetic instabilities in high-β plasmas, where β is the ratio of the kinetic plasma energy t...
© 2015. The American Astronomical Society. All rights reserved.. In diffuse plasmas in space, partic...
The double adiabatic expansion of the nearly collisionless solar wind plasma creates conditions for ...
Beobachtungen im Sonnenwind zeigen, dass in der Parameter-Ebene definiert durch die Anisotropie und ...
Context. Solar outflows are a considerable source of free energy that accumulates in multiple forms ...
We analyse the temperature anisotropy of the protons in the solar wind and thereby concentrate on pl...
We report the first study of the correlation between elevated solar wind core plasma temperatures an...
Two central components are revealed by electron velocity distributions measured in space plasmas, a ...
Turbulence in space plasmas usually exhibits an energy cascade in which large-scale magnetic fluctua...
The increase of temperature predicted by the solar wind expansion in the direction parallel to the i...
Thefirehose and mirror instabilities are thought to arise in a variety of space and astrophysical pl...