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Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Prof Michael Barnes

Professor in Theoretical Physics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Theoretical astrophysics and plasma physics at RPC
michael.barnes@physics.ox.ac.uk
Telephone: 01865 (2)73960
Rudolf Peierls Centre for Theoretical Physics, room 50.10
  • About
  • Publications

Constraints on ion vs. electron heating by plasma turbulence at low beta

(2018)

Authors:

AA Schekochihin, Y Kawazura, MA Barnes

Intrinsic rotation driven by turbulent acceleration

Plasma Physics and Controlled Fusion IOP Publishing 61:2 (2018)

Authors:

Michael Barnes, Felix Parra

Abstract:

Differential rotation is induced in tokamak plasmas when an underlying symmetry of the governing gyrokinetic-Maxwell system of equations is broken. One such symmetry-breaking mechanism is considered here: the turbulent acceleration of particles along the mean magnetic field. This effect, often referred to as the ‘parallel nonlinearity’, has been implemented in the δf gyrokinetic code stella and used to study the dependence of turbulent momentum transport on the plasma size and on the strength of the turbulence drive. For JET-like parameters with a wide range of driving temperature gradients, the momentum transport induced by the inclusion of turbulent acceleration is similar to or smaller than the ratio of the ion Larmor radius to the plasma minor radius. This low level of momentum transport is explained by demonstrating an additional symmetry that prohibits momentum transport when the turbulence is driven far above marginal stability.

Intrinsic rotation driven by turbulent acceleration

(2018)

Authors:

Michael Barnes, Felix I Parra

Thermal disequilibration of ions and electrons by collisionless plasma turbulence

(2018)

Authors:

Yohei Kawazura, Michael Barnes, Alexander A Schekochihin

$\texttt{stella}$: a mixed implicit-explicit, delta-f gyrokinetic code for general magnetic field configurations

(2018)

Authors:

Michael Barnes, Felix Parra-Diaz, Matt Landreman

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