We examine the radiative cooling of coronal loops and demonstrate that the recently identified catastrophic cooling is due to the inability of a loop to sustain radiative/enthalpy cooling below a critical temperature, which can be >1 MK in flares, 0.5-1 MK in active regions, and 0.1 MK in long tenuous loops. Catastrophic cooling is characterized by a rapid fall in coronal temperature, while the coronal density changes by a small amount. Analytic expressions for the critical temperature are derived and show good agreement with numerical results. This effect considerably limits the lifetime of coronal plasmas below the critical temperature
The cooling of post-flare plasmas is discussed and the formation of loop prominences is explained as...
A one-dimensional hydrodynamics code is used to study the cooling of solar flares. The cooling of th...
Flare-driven coronal rain can manifest from rapidly cooled plasma condensations near coronal loop to...
We examine the radiative cooling of coronal loops and demonstrate that the recently identified catas...
ABSTRACT---- We investigate a model for the decay of flare heated coronal loops in which rapid radia...
Daniel MüllerThe cover illustration shows space-time plots of the modeled temperature distribution a...
This work addresses the problem of plasma condensation and “catastrophic cooling” in solar coronal l...
Context. Radiative losses from optically thin plasma are an important ingredient in modeli...
Models in which radiation dominates cooling flare loops are investigated. The radiative models are f...
Flare-driven coronal rain can manifest from rapidly cooled plasma condensations near coronal loop to...
The robust $T \propto n^\delta$ power-law relationship between the temperature (T) and the density (...
We investigate the impact of turbulent suppression of parallel heat conduction on the cooling of pos...
Aims. We aim to study the influence of radiative cooling on the standing kink oscillations of a coro...
At high spatial and temporal resolution, coronal loops are observed to have a highly dynamic nature....
The thermal equilibria along a symmetric coronal loop with constant cross-sectional area is investig...
The cooling of post-flare plasmas is discussed and the formation of loop prominences is explained as...
A one-dimensional hydrodynamics code is used to study the cooling of solar flares. The cooling of th...
Flare-driven coronal rain can manifest from rapidly cooled plasma condensations near coronal loop to...
We examine the radiative cooling of coronal loops and demonstrate that the recently identified catas...
ABSTRACT---- We investigate a model for the decay of flare heated coronal loops in which rapid radia...
Daniel MüllerThe cover illustration shows space-time plots of the modeled temperature distribution a...
This work addresses the problem of plasma condensation and “catastrophic cooling” in solar coronal l...
Context. Radiative losses from optically thin plasma are an important ingredient in modeli...
Models in which radiation dominates cooling flare loops are investigated. The radiative models are f...
Flare-driven coronal rain can manifest from rapidly cooled plasma condensations near coronal loop to...
The robust $T \propto n^\delta$ power-law relationship between the temperature (T) and the density (...
We investigate the impact of turbulent suppression of parallel heat conduction on the cooling of pos...
Aims. We aim to study the influence of radiative cooling on the standing kink oscillations of a coro...
At high spatial and temporal resolution, coronal loops are observed to have a highly dynamic nature....
The thermal equilibria along a symmetric coronal loop with constant cross-sectional area is investig...
The cooling of post-flare plasmas is discussed and the formation of loop prominences is explained as...
A one-dimensional hydrodynamics code is used to study the cooling of solar flares. The cooling of th...
Flare-driven coronal rain can manifest from rapidly cooled plasma condensations near coronal loop to...