First-authored, refereed papers of Tom Van Doorsselaere


A list of first-authored, refereed publications of Tom Van Doorsselaere, derived from the SAO/NASA Astrophysics Data System (ADS). The number in brackets after each title indicates the number of citations that the paper has received.

Orcid ID: 0000-0001-9628-4113

List of publications ordered by citations
Number of papers: 25
No. of citations: 1873

2025

  1. Uniturbulence and Alfvén wave solar model [3]
    Van Doorsselaere, T., Sieyra, M. V., Magyar, N., Goossens, M. & Banović, L., A&A, 696, A166

2024

  1. The magnetohydrodynamic equations in terms of waveframe variables [2]
    Van Doorsselaere, T., Magyar, N., Sieyra, M. V. & Goossens, M., Journal of Plasma Physics, 90, 905900113
  2. Multithermal apparent damping of slow waves due to strands with a Gaussian temperature distribution [2]
    Van Doorsselaere, T., Krishna Prasad, S., Pant, V., Banerjee, D. & Hood, A., A&A, 683, A109

2021

  1. Nonlinear Damping of Standing Kink Waves Computed With Elsässer Variables [33]
    Van Doorsselaere, Tom, Goossens, Marcel, Magyar, Norbert, Ruderman, Michael S. & Ismayilli, Rajab, ApJ, 910, 58

2020

  1. Coronal Heating by MHD Waves [214]
    Van Doorsselaere, Tom, Srivastava, Abhishek K., Antolin, Patrick, Magyar, Norbert, Vasheghani Farahani, Soheil, Tian, Hui, Kolotkov, Dmitrii, Ofman, Leon, Guo, Mingzhe, Arregui, Iñigo, De Moortel, Ineke & Pascoe, David, Space Science Reviews, 216, 140
  2. Wave Pressure and Energy Cascade Rate of Kink Waves Computed with Elsässer Variables [24]
    Van Doorsselaere, Tom, Li, Bo, Goossens, Marcel, Hnat, Bogdan & Magyar, Norbert, ApJ, 899, 100

2018

  1. Broadening of the differential emission measure by multi-shelled and turbulent loops [16]
    Van Doorsselaere, T., Antolin, P. & Karampelas, K., A&A, 620, A65

2017

  1. Stellar Flares Observed in Long-cadence Data from the Kepler Mission [86]
    Van Doorsselaere, Tom, Shariati, Hoda & Debosscher, Jonas, ApJS, 232, 26

2016

  1. Quasi-periodic Pulsations in Solar and Stellar Flares: An Overview of Recent Results (Invited Review) [154]
    Van Doorsselaere, Tom, Kupriyanova, Elena G. & Yuan, Ding, Solar Physics, 291, 3143
  2. Forward modelling of optically thin coronal plasma with the FoMo tool [87]
    Van Doorsselaere, Tom, Antolin, Patrick, Yuan, Ding, Reznikova, Veronika & Magyar, Norbert, Frontiers in Astronomy and Space Sciences, 3, 4

2014

  1. Energy Propagation by Transverse Waves in Multiple Flux Tube Systems Using Filling Factors [63]
    Van Doorsselaere, T., Gijsen, S. E., Andries, J. & Verth, G., ApJ, 795, 18

2011

  1. LYRA Observations of Two Oscillation Modes in a Single Flare [77]
    Van Doorsselaere, T., De Groof, A., Zender, J., Berghmans, D. & Goossens, M., ApJ, 740, 90
  2. The First Measurement of the Adiabatic Index in the Solar Corona Using Time-dependent Spectroscopy of Hinode/EIS Observations [107]
    Van Doorsselaere, Tom, Wardle, Nick, Del Zanna, Giulio, Jansari, Kishan, Verwichte, Erwin & Nakariakov, Valery M., ApJ, 727, L32

2009

  1. Detection of three periodicities in a single oscillating coronal loop [35]
    van Doorsselaere, T., Birtill, D. C. C. & Evans, G. R., A&A, 508, 1485
  2. The Effect of Loop Curvature on Coronal Loop Kink Oscillations [63]
    van Doorsselaere, Tom, Verwichte, Erwin & Terradas, Jaume, Space Science Reviews, 149, 299

2008

  1. Detection of Waves in the Solar Corona: Kink or Alfvén? [250]
    Van Doorsselaere, T., Nakariakov, V. M. & Verwichte, E., ApJ, 676, L73
  2. Seismological demonstration of perpendicular density structuring in the solar corona [65]
    Van Doorsselaere, T., Brady, C. S., Verwichte, E. & Nakariakov, V. M., A&A, 491, L9
  3. Coronal magnetic field measurement using loop oscillations observed by Hinode/EIS [106]
    Van Doorsselaere, T., Nakariakov, V. M., Young, P. R. & Verwichte, E., A&A, 487, L17
  4. Transverse oscillations of two parallel coronal loops [43]
    Van Doorsselaere, T., Ruderman, M. S. & Robertson, D., A&A, 485, 849

2007

  1. Modifications to the resistive MHD spectrum due to changes in the equilibrium [13]
    Van Doorsselaere, T. & Poedts, S., Plasma Physics and Controlled Fusion, 49, 261
  2. Coronal loop seismology using multiple transverse loop oscillation harmonics [132]
    Van Doorsselaere, T., Nakariakov, V. M. & Verwichte, E., A&A, 473, 959
  3. Observational evidence favors a resistive wave heating mechanism for coronal loops over a viscous phenomenon [31]
    Van Doorsselaere, T., Andries, J. & Poedts, S., A&A, 471, 311

2005

  1. Dynamics of Coronal Loop Oscillations Recent Improvements and Computational Aspects [1]
    van Doorsselaere, T., Arregui, I., Andries, J., Goossens, M. & Poedts, S., Space Science Reviews, 121, 79

2004

  1. Damping of Coronal Loop Oscillations: Calculation of Resonantly Damped Kink Oscillations of One-dimensional Nonuniform Loops [153]
    Van Doorsselaere, T., Andries, J., Poedts, S. & Goossens, M., ApJ, 606, 1223
  2. The effect of curvature on quasi-modes in coronal loops [113]
    Van Doorsselaere, T., Debosscher, A., Andries, J. & Poedts, S., A&A, 424, 1065


Created on Wed Apr 8 04:37:21 2026.