86 citations · 338 across the 8 of their papers we have counts for
10 papers
The First 3D Coronal Loop Model Heated by MHD Waves against Radiative Losses
Mijie Shi, Tom Van Doorsselaere, Mingzhe Guo +3
In the quest to solve the long-standing coronal heating problem, it has been suggested half a century ago that coronal loops could be heated by waves. Despite the accumulating obse…
Transverse loop oscillations via vortex shedding: a self oscillating process
Konstantinos Karampelas, Tom Van Doorsselaere
Identifying the underlying mechanisms behind the excitation of transverse oscillations in coronal loops is essential for their role as diagnostic tools in coronal seismology and th…
Generating transverse loop oscillations through a steady-flow driver
Konstantinos Karampelas, Tom Van Doorsselaere
In recent years, the decay-less regime of standing transverse oscillations in coronal loops has been the topic of many observational and numerical studies, focusing on their physic…
Estimating the energy dissipation {from Kelvin-Helmholtz instability induced} turbulence in oscillating coronal loops}
Andrew Hillier, Tom Van Doorsselaere, Konstantinos Karampelas
Kelvin-Helmholtz {instability induced} turbulence is one promising mechanism by which loops in the solar corona can be heated by MHD waves. In this paper we present an analytical m…
Wave heating in simulated multi-stranded coronal loops
Mingzhe Guo, Tom Van Doorsselaere, Konstantinos Karampelas +1
It has been found that the Kelvin-Helmholtz instability (KHI) induced by both transverse and torsional oscillations in coronal loops can reinforce the effects of wave heating. In t…
Amplitudes and energy fluxes of simulated decayless kink oscillations
K. Karampelas, T. Van Doorsselaere, D. J. Pascoe +2
Recent observations with the Atmospheric Imaging Assembly (AIA) instrument on the SDO spacecraft have revealed the existence of decayless coronal kink oscillations. These transvers…