270 citations · 1.1k across the 17 of their papers we have counts for
4 papers · 1 filter
Stochastic proton heating by kinetic-Alfvén-wave turbulence in moderately high- plasmas
Ian W. Hoppock, Benjamin D. G. Chandran, Kristopher G. Klein +2
Stochastic heating refers to an increase in the average magnetic moment of charged particles interacting with electromagnetic fluctuations whose frequencies are smaller than the pa…
Interplay between intermittency and dissipation in collisionless plasma turbulence
Alfred Mallet, Kristopher G. Klein, Benjamin D. G. Chandran +5
We study the damping of collisionless Alfvénic turbulence by two mechanisms: stochastic heating (whose efficiency depends on the local turbulence amplitude ) and linear Landa…
NHDS: The New Hampshire Dispersion Relation Solver
Daniel Verscharen, Benjamin D. G. Chandran
NHDS is the New Hampshire Dispersion Relation Solver. This article describes the numerics of the solver and its capabilities. The code is available for download on https://github.c…
ALPS: The Arbitrary Linear Plasma Solver
Daniel Verscharen, Kristopher G. Klein, Benjamin D. G. Chandran +3
The Arbitrary Linear Plasma Solver (ALPS) is a parallelised numerical code that solves the dispersion relation in a hot (even relativistic) magnetised plasma with an arbitrary numb…