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Physics

D-Index
73
Citations
15159
World Ranking
3547
National Ranking
339

Overview

A. G. Peeters is affiliated with the University of Bayreuth in Germany and conducts research primarily in the field of Physics and Astronomy. Their work spans multiple subfields including Nuclear and High Energy Physics, Materials Chemistry, Astronomy and Astrophysics, Biomedical Engineering, and Aerospace Engineering.

The scientist's research topics cover several areas such as magnetic confinement fusion research, fusion materials and technologies, laser-plasma interactions and diagnostics, ionosphere and magnetosphere dynamics, superconducting materials and applications, particle accelerators and beam dynamics, and plasma diagnostics and applications.

Among the recent publications by A. G. Peeters are:

  • Operating a full tungsten actively cooled tokamak: overview of WEST first phase of operation, 2021, Nuclear Fusion
  • Overview of the TCV tokamak experimental programme, 2022, Nuclear Fusion
  • Transport barrier onset and edge turbulence shortfall in fusion plasmas, 2022, Communications Physics
  • Core tungsten transport in WEST long pulse L-mode plasmas, 2020, Nuclear Fusion
  • Progress from ASDEX Upgrade experiments in preparing the physics basis of ITER operation and DEMO scenario development, 2021, Nuclear Fusion

Frequent collaborators of A. G. Peeters include:

  • S. Coda
  • E. Alessi
  • D. Brida
  • P. David
  • M. Dreval

Publishing venues where the scientist has appeared repeatedly include:

  • Nuclear Fusion
  • Plasma Physics and Controlled Fusion
  • Communications Physics
  • Nature Physics
  • Physics of Plasmas

Best Publications

  • Chapter 2: Plasma confinement and transport

    E. J. Doyle;W. A. Houlberg;Y. Kamada;V. Mukhovatov

  • TORBEAM, a beam tracing code for electron-cyclotron waves in tokamak plasmas

    E. Poli;A.G. Peeters;G.V. Pereverzev

  • Toroidal Momentum Pinch Velocity due to the Coriolis Drift Effect on Small Scale Instabilities in a Toroidal Plasma

    A. G. Peeters;C. Angioni;D. Strintzi

  • Experiments on neoclassical tearing mode stabilization by ECCD in ASDEX Upgrade

    H. Zohm;G. Gantenbein;G. Giruzzi;S. Günter

  • Physics of transport in tokamaks

    X. Garbet;P. Mantica;C. Angioni;E. Asp

  • Density peaking, anomalous pinch, and collisionality in tokamak plasmas.

    C. Angioni;A. G. Peeters;G. V. Pereverzev;F. Ryter

  • Particle transport in tokamak plasmas, theory and experiment

    Clemente Angioni;Emiliano Fable;M. Greenwald;Mikhail Maslov

  • Impact of plasma triangularity and collisionality on electron heat transport in TCV L-mode plasmas

    Y. Camenen;A. Pochelon;R. Behn;A. Bottino

  • Experimental study of the ion critical-gradient length and stiffness level and the impact of rotation in the JET tokamak.

    P. Mantica;D. Strintzi;T. Tala;C. Giroud

  • Influence of the heating profile on impurity transport in ASDEX Upgrade

    R. Dux;R. Neu;A. G. Peeters;G. Pereverzev

  • Density response to central electron heating: theoretical investigations and experimental observations in ASDEX Upgrade

    C. Angioni;A. G. Peeters;X. Garbet;A. Manini

  • Z dependence of the core impurity transport in ASDEX Upgrade H mode discharges

    R. Dux;A. G. Peeters;A. Gude;A. Kallenbach

  • Direction of impurity pinch and auxiliary heating in tokamak plasmas.

    C. Angioni;A. G. Peeters

  • Internal transport barrier triggering by rational magnetic flux surfaces in tokamaks

    E. Joffrin;C.D. Challis;G.D. Conway;X. Garbet

  • Thermodynamic generalization of the Saha equation for a two-temperature plasma.

    van de Mcm Richard Sanden;Ppjm Piet Schram;AG Peeters;van der Jjam Joost Mullen

  • Experimental Study of Trapped-Electron-Mode Properties in Tokamaks: Threshold and Stabilization by Collisions

    F. Ryter;C. Angioni;A. G. Peeters;F. Leuterer

  • Overview of toroidal momentum transport

    A. G. Peeters;C. Angioni;A. Bortolon;Y. Camenen

  • Steady state advanced scenarios at ASDEX Upgrade

    A. C. C. Sips;R. Arslanbekov;C. Atanasiu;W. Becker

  • A key to improved ion core confinement in the JET tokamak: ion stiffness mitigation due to combined plasma rotation and low magnetic shear.

    P. Mantica;C. Angioni;C. Challis;G. Colyer

  • Transport of Parallel Momentum Induced by Current-Symmetry Breaking in Toroidal Plasmas

    Y. Camenen;A. G. Peeters;C. Angioni;F. J. Casson

Frequent Co-Authors

C. Angioni
C. Angioni Max Planck Society
F. Ryter
F. Ryter Max Planck Society
R. Dux
R. Dux Max Planck Society
H. Zohm
H. Zohm Max Planck Institute for Plasma Physics
A. Kallenbach
A. Kallenbach Max Planck Society
Michael Kaufmann
Michael Kaufmann University of Tübingen
R. Neu
R. Neu Max Planck Institute for Plasma Physics
Jet-Efda Contributors
Jet-Efda Contributors International Atomic Energy Agency
Peter Lang
Peter Lang University of Bern

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