activity
20142023
most citedOn seed island generation and the non-linear self-consistent interaction of the tearing mode with electromagnetic gyro-kinetic turbulence

42 citations · 111 across the 6 of their papers we have counts for

collaborators

5 papers

physics.plasm-ph201737 cited

Experimental observations and modelling of intrinsic rotation reversals in tokamaks

Y. Camenen, C. Angioni, A. Bortolon +8

The progress made in understanding spontaneous toroidal rotation reversals in tokamaks is reviewed and current ideas to solve this ten-year-old puzzle are explored. The paper inclu…

physics.plasm-ph2015

The non-linear evolution of the tearing mode in electromagnetic turbulence using gyrokinetic simulations

William A Hornsby, Pierluigi Migliano, Rico Buchholz +6

The non-linear evolution of a magnetic island is studied using the Vlasov gyro-kinetic code GKW. The interaction of electromagnetic turbulence with a self-consistently growing magn…

physics.plasm-ph201442 cited

On seed island generation and the non-linear self-consistent interaction of the tearing mode with electromagnetic gyro-kinetic turbulence

William Hornsby, Pierluigi Migliano, Rico Buchholz +4

The multi-scale interaction of self-consistently driven magnetic islands with electromagnetic turbulence is studied within the three dimensional, toroidal gyro-kinetic framework. I…

physics.plasm-ph201428 cited

The linear tearing instability in three dimensional, toroidal gyrokinetic simulations

William Hornsby, Pierluigi Migliano, Rico Bucholz +5

Linear gyro-kinetic simulations of the classical tearing mode in three-dimensional toroidal geometry were performed using the global gyro kinetic turbulence code, GKW . The results…

physics.plasm-ph20141 cited

Nonlinear seed island generation by three-dimensional electromagnetic, gyrokinetic turbulence

William Hornsby, Pierluigi Migliano, Rico Buchholz +4

Turbulence is shown to be critical to the onset and evolution of the neoclassical tearing mode, affecting both its growth and rotation. The interaction is here studied for the firs…