Publications of Bart van der Holst ordered by citations


A list of publications authored or co-authored by Bart van der Holst, derived from the SAO/NASA Astrophysics Data System (ADS) and ordered by the numbers of citations. Publications above the horizontal line count towards the h-index.

Orcid ID: 0000-0001-5260-3944

Number of papers: 77
No. of citations: 3853

605 Adaptive numerical algorithms in space weather modeling
Tóth, Gábor, van der Holst, Bart, Sokolov, Igor V., De Zeeuw, Darren L., Gombosi, Tamas I., Fang, Fang, Manchester, Ward B., Meng, Xing, Najib, Dalal, Powell, Kenneth G., Stout, Quentin F., Glocer, Alex, Ma, Ying-Juan & Opher, Merav, 2012, Journal of Computational Physics, 231, 870
432 Alfvén Wave Solar Model (AWSoM): Coronal Heating
van der Holst, B., Sokolov, I. V., Meng, X., Jin, M., Manchester, W. B., IV, Tóth, G. & Gombosi, T. I., 2014, ApJ, 782, 81
261 Parallel, grid-adaptive approaches for relativistic hydro and magnetohydrodynamics
Keppens, R., Meliani, Z., van Marle, A. J., Delmont, P., Vlasis, A. & van der Holst, B., 2012, Journal of Computational Physics, 231, 718
162 Magnetohydrodynamic Waves and Coronal Heating: Unifying Empirical and MHD Turbulence Models
Sokolov, Igor V., van der Holst, Bart, Oran, Rona, Downs, Cooper, Roussev, Ilia I., Jin, Meng, Manchester, Ward B., IV, Evans, Rebekah M. & Gombosi, Tamas I., 2013, ApJ, 764, 23
141 A Data-driven, Two-temperature Solar Wind Model with Alfvén Waves
van der Holst, B., Manchester, W. B., IV, Frazin, R. A., Vásquez, A. M., Tóth, G. & Gombosi, T. I., 2010, ApJ, 725, 1373
102 Obtaining Potential Field Solutions with Spherical Harmonics and Finite Differences
Tóth, Gábor, van der Holst, Bart & Huang, Zhenguang, 2011, ApJ, 732, 102
97 Understanding SDO/AIA Observations of the 2010 June 13 EUV Wave Event: Direct Insight from a Global Thermodynamic MHD Simulation
Downs, Cooper, Roussev, Ilia I., van der Holst, Bart, Lugaz, Noé & Sokolov, Igor V., 2012, ApJ, 750, 134
93 Studying Extreme Ultraviolet Wave Transients with a Digital Laboratory: Direct Comparison of Extreme Ultraviolet Wave Observations to Global Magnetohydrodynamic Simulations
Downs, Cooper, Roussev, Ilia I., van der Holst, Bart, Lugaz, Noé, Sokolov, Igor V. & Gombosi, Tamas I., 2011, ApJ, 728, 2
89 CRASH: A Block-adaptive-mesh Code for Radiative Shock Hydrodynamics—Implementation and Verification
van der Holst, B., Tóth, G., Sokolov, I. V., Powell, K. G., Holloway, J. P., Myra, E. S., Stout, Q., Adams, M. L., Morel, J. E., Karni, S., Fryxell, B. & Drake, R. P., 2011, ApJS, 194, 23
87 Toward a Realistic Thermodynamic Magnetohydrodynamic Model of the Global Solar Corona
Downs, Cooper, Roussev, Ilia I., van der Holst, Bart, Lugaz, Noé, Sokolov, Igor V. & Gombosi, Tamas I., 2010, ApJ, 712, 1219
85 Chromosphere to 1 AU Simulation of the 2011 March 7th Event: A Comprehensive Study of Coronal Mass Ejection Propagation
Jin, M., Manchester, W. B., van der Holst, B., Sokolov, I., Tóth, G., Vourlidas, A., de Koning, C. A. & Gombosi, T. I., 2017, ApJ, 834, 172
78 Hybrid block-AMR in cartesian and curvilinear coordinates: MHD applications
van der Holst, B. & Keppens, R., 2007, Journal of Computational Physics, 226, 925
70 FINESSE: Axisymmetric MHD Equilibria with Flow
Beliën, A. J. C., Botchev, M. A., Goedbloed, J. P., van der Holst, B. & Keppens, R., 2002, Journal of Computational Physics, 182, 91
64 What sustained multi-disciplinary research can achieve: The space weather modeling framework
Gombosi, Tamas I., Chen, Yuxi, Glocer, Alex, Huang, Zhenguang, Jia, Xianzhe, Liemohn, Michael W., Manchester, Ward B., Pulkkinen, Tuija, Sachdeva, Nishtha, Al Shidi, Qusai, Sokolov, Igor V., Szente, Judit, Tenishev, Valeriy, Toth, Gabor, van der Holst, Bart, Welling, Daniel T., Zhao, Lulu & Zou, Shasha, 2021, Journal of Space Weather and Space Climate, 11, 42
62 Low frequency Alfvén waves induced by toroidal flows
van der Holst, B., Beliën, A. J. C. & Goedbloed, J. P., 2000, Physics of Plasmas, 7, 4208
62 On the effect of the initial magnetic polarity and of the background wind on the evolution of CME shocks
Chané, E., Jacobs, C., van der Holst, B., Poedts, S. & Kimpe, D., 2005, A&A, 432, 331
59 A Global Two-temperature Corona and Inner Heliosphere Model: A Comprehensive Validation Study
Jin, M., Manchester, W. B., van der Holst, B., Gruesbeck, J. R., Frazin, R. A., Landi, E., Vasquez, A. M., Lamy, P. L., Llebaria, A., Fedorov, A., Toth, G. & Gombosi, T. I., 2012, ApJ, 745, 6
58 Simulation of a Breakout Coronal Mass Ejection in the Solar Wind
van der Holst, B., Jacobs, C. & Poedts, S., 2007, ApJ, 671, L77
58 Validation of the Alfvén Wave Solar Atmosphere Model (AWSoM) with Observations from the Low Corona to 1 au
Sachdeva, Nishtha, van der Holst, Bart, Manchester, Ward B., Tóth, Gabor, Chen, Yuxi, Lloveras, Diego G., Vásquez, Alberto M., Lamy, Philippe, Wojak, Julien, Jackson, Bernard V., Yu, Hsiu-Shan & Henney, Carl J., 2019, ApJ, 887, 83
55 Inverse and normal coronal mass ejections: evolution up to 1 AU
Chané, E., van der Holst, B., Jacobs, C., Poedts, S. & Kimpe, D., 2006, A&A, 447, 727
54 Numerical Simulations of Coronal Mass Ejection on 2011 March 7: One-temperature and Two-temperature Model Comparison
Jin, M., Manchester, W. B., van der Holst, B., Oran, R., Sokolov, I., Toth, G., Liu, Y., Sun, X. D. & Gombosi, T. I., 2013, ApJ, 773, 50
54 Simulation of Flux Emergence from the Convection Zone to the Corona
Fang, Fang, Manchester, Ward, Abbett, William P. & van der Holst, Bart, 2010, ApJ, 714, 1649
52 A multidimensional grid-adaptive relativistic magnetofluid code
van der Holst, B., Keppens, R. & Meliani, Z., 2008, Computer Physics Communications, 179, 617
51 Extragalactic jets with helical magnetic fields: relativistic MHD simulations
Keppens, R., Meliani, Z., van der Holst, B. & Casse, F., 2008, A&A, 486, 663
46 Breakout Coronal Mass Ejection or Streamer Blowout: The Bugle Effect
van der Holst, B., Manchester, W., IV, Sokolov, I. V., Tóth, G., Gombosi, T. I., DeZeeuw, D. & Cohen, O., 2009, ApJ, 693, 1178
46 Unstable continuous spectra of transonic axisymmetric plasmas
Goedbloed, J. P., Beliën, A. J. C., van der Holst, B. & Keppens, R., 2004, Physics of Plasmas, 11, 28
45 The effect of the solar wind on CME triggering by magnetic foot point shearing
Jacobs, C., Poedts, S. & van der Holst, B., 2006, A&A, 450, 793
44 The Coupled Evolution of Electrons and Ions in Coronal Mass Ejection-driven shocks
Manchester, W. B., IV, van der Holst, B., Tóth, G. & Gombosi, T. I., 2012, ApJ, 756, 81
43 Coronal Heating by Surface Alfvén Wave Damping: Implementation in a Global Magnetohydrodynamics Model of the Solar Wind
Evans, R. M., Opher, M., Oran, R., van der Holst, B., Sokolov, I. V., Frazin, R., Gombosi, T. I. & Vásquez, A., 2012, ApJ, 756, 155
41 New Alfvén Continuum Gaps and Global Modes Induced by Toroidal Flow
van der Holst, B., Beliën, A. J. C. & Goedbloed, J. P., 2000, Physical Review Letters, 84, 2865
39 Modelling the initiation of coronal mass ejections: magnetic flux emergence versus shearing motions
Zuccarello, F. P., Jacobs, C., Soenen, A., Poedts, S., van der Holst, B. & Zuccarello, F., 2009, A&A, 507, 441
39 On the effect of the background wind on the evolution of interplanetary shock waves
Jacobs, C., Poedts, S., Van der Holst, B. & Chané, E., 2005, A&A, 430, 1099
38 Dynamic Coupling of Convective Flows and Magnetic Field during Flux Emergence
Fang, Fang, Manchester, Ward, IV, Abbett, William P. & van der Holst, Bart, 2012, ApJ, 745, 37
36 Predictions for the First Parker Solar Probe Encounter
van der Holst, B., Manchester, W. B., IV, Klein, K. G. & Kasper, J. C., 2019, ApJ, 872, L18
36 Buildup of Magnetic Shear and Free Energy during Flux Emergence and Cancellation
Fang, Fang, Manchester, Ward, IV, Abbett, William P. & van der Holst, Bart, 2012, ApJ, 754, 15
33 Threaded-field-line Model for the Low Solar Corona Powered by the Alfvén Wave Turbulence
Sokolov, Igor V., Holst, Bart van der, Manchester, Ward B., Su Ozturk, Doga Can, Szente, Judit, Taktakishvili, Aleksandre, Tóth, Gábor, Jin, Meng & Gombosi, Tamas I., 2021, ApJ, 908, 172
32 Radiative effects in radiative shocks in shock tubes
Drake, R. P., Doss, F. W., McClarren, R. G., Adams, M. L., Amato, N., Bingham, D., Chou, C. C., DiStefano, C., Fidkowski, K., Fryxell, B., Gombosi, T. I., Grosskopf, M. J., Holloway, J. P., van der Holst, B., Huntington, C. M., Karni, S., Krauland, C. M., Kuranz, C. C., Larsen, E., van Leer, B., Mallick, B., Marion, D., Martin, W., Morel, J. E., Myra, E. S., Nair, V., Powell, K. G., Rauchwerger, L., Roe, P., Rutter, E., Sokolov, I. V., Stout, Q., Torralva, B. R., Toth, G., Thornton, K. & Visco, A. J., 2011, High Energy Density Physics, 7, 130
27 PHOENIX: MHD spectral code for rotating laboratory and gravitating astrophysical plasmas
Blokland, J. W. S., van der Holst, B., Keppens, R. & Goedbloed, J. P., 2007, Journal of Computational Physics, 226, 509
26 Improving the Alfvén Wave Solar Atmosphere Model Based on Parker Solar Probe Data
van der Holst, B., Huang, J., Sachdeva, N., Kasper, J. C., Manchester, W. B., IV, Borovikov, D., Chandran, B. D. G., Case, A. W., Korreck, K. E., Larson, D., Livi, R., Stevens, M., Whittlesey, P., Bale, S. D., Pulupa, M., Malaspina, D. M., Bonnell, J. W., Harvey, P. R., Goetz, K. & MacDowall, R. J., 2022, ApJ, 925, 146
24 Simulating Solar Maximum Conditions Using the Alfvén Wave Solar Atmosphere Model (AWSoM)
Sachdeva, Nishtha, Tóth, Gábor, Manchester, Ward B., van der Holst, Bart, Huang, Zhenguang, Sokolov, Igor V., Zhao, Lulu, Shidi, Qusai Al, Chen, Yuxi, Gombosi, Tamas I., Henney, Carl J., Lloveras, Diego G. & Vásquez, Alberto M., 2021, ApJ, 923, 176
24 Comparison between 2.5D and 3D simulations of coronal mass ejections
Jacobs, C., van der Holst, B. & Poedts, S., 2007, A&A, 470, 359
23 On the combination of ACE data with numerical simulations to determine the initial characteristics of a CME
Chané, E., Poedts, S. & van der Holst, B., 2008, A&A, 492, L29
19 Numerical simulations of homologous coronal mass ejections in the solar wind
Soenen, A., Zuccarello, F. P., Jacobs, C., Poedts, S., Keppens, R. & van der Holst, B., 2009, A&A, 501, 1123
18 One Year in the Life of Young Suns: Data-constrained Corona-wind Model of κ1 Ceti
Airapetian, Vladimir S., Jin, Meng, Lüftinger, Theresa, Boro Saikia, Sudeshna, Kochukhov, Oleg, Güdel, Manuel, Van Der Holst, Bart & Manchester, W., IV, 2021, ApJ, 916, 96
17 Modelling of Solar Wind, CME Initiation and CME Propagation
van der Holst, B., Poedts, S., Chané, E., Jacobs, C., Dubey, G. & Kimpe, D., 2005, Space Science Reviews, 121, 91
17 Calculating magnetohydrodynamic flow spectra
Nijboer, R. J., Holst, B. v. d., Poedts, S. & Goedbloed, J. P., 1997, Computer Physics Communications, 106, 39
16 No additional flow continua in magnetohydrodynamics
Goedbloed, J. P., Beliën, A. J. C., Holst, B. van der & Keppens, R., 2004, Physics of Plasmas, 11, 4332
16 The initiation of coronal mass ejections by magnetic flux emergence
Dubey, G., van der Holst, B. & Poedts, S., 2006, A&A, 459, 927
15 Charge State Calculation for Global Solar Wind Modeling
Szente, J., Landi, E. & van der Holst, B., 2022, ApJ, 926, 35
13 Simulating radiative shocks with the CRASH laser package
van der Holst, B., Tóth, G., Sokolov, I. V., Torralva, B. R., Powell, K. G., Drake, R. P., Klapisch, M., Busquet, M., Fryxell, B. & Myra, E. S., 2013, High Energy Density Physics, 9, 8
12 SPECTRUM: Synthetic Spectral Calculations for Global Space Plasma Modeling
Szente, J., Landi, E., Manchester, W. B., IV, Toth, G., van der Holst, B. & Gombosi, T. I., 2019, ApJS, 242, 1
12 Jeans instability of an inhomogeneous streaming dusty plasma
Pandey, B. P., van Dere Holst, B., Vranjes, J. & Poedts, S., 2003, Pramana, 61, 109
12 Simulating radiative shocks in nozzle shock tubes
van der Holst, B., Tóth, G., Sokolov, I. V., Daldorff, L. K. S., Powell, K. G. & Drake, R. P., 2012, High Energy Density Physics, 8, 161
11 Thermodynamic Structure of the Solar Corona: Tomographic Reconstructions and MHD Modeling
Lloveras, Diego G., Vásquez, Alberto M., Nuevo, Federico A., Mac Cormack, Cecilia, Sachdeva, Nishtha, Manchester, Ward, Van der Holst, Bartholomeus & Frazin, Richard A., 2020, Solar Physics, 295, 76
10 AWSoM Magnetohydrodynamic Simulation of a Solar Active Region with Realistic Spectral Synthesis
Shi, Tong, Manchester, Ward, IV, Landi, Enrico, van der Holst, Bart, Szente, Judit, Chen, Yuxi, Tóth, Gábor, Bertello, Luca & Pevtsov, Alexander, 2022, ApJ, 928, 34
10 Calculation of resistive magnetohydrodynamic spectra in tokamaks
van der Holst, B., Beliën, A. J. C., Goedbloed, J. P., Nool, M. & van der Ploeg, A., 1999, Physics of Plasmas, 6, 1554
9 An exact Riemann-solver-based solution for regular shock refraction
Delmont, P., Keppens, R. & van der Holst, B., 2009, Journal of Fluid Mechanics, 627, 33
9 Magnetohydrodynamic spectrum of gravitating plane plasmas with flow
van der Holst, B., Nijboer, R. J. & Goedbloed, J. P., 1999, Journal of Plasma Physics, 61, 221
9 Solar Wind Modeling with the Alfvén Wave Solar atmosphere Model Driven by HMI-based Near-real-time Maps by the National Solar Observatory
Sachdeva, Nishtha, Manchester, Ward B., IV, Sokolov, Igor, Huang, Zhenguang, Pevtsov, Alexander, Bertello, Luca, Pevtsov, Alexei A., Toth, Gabor, van der Holst, Bart & Henney, Carl J., 2023, ApJ, 952, 117
8 Modeling the Solar Wind during Different Phases of the Last Solar Cycle
Huang, Zhenguang, Tóth, Gábor, Sachdeva, Nishtha, Zhao, Lulu, van der Holst, Bart, Sokolov, Igor, Manchester, Ward B. & Gombosi, Tamas I., 2023, ApJ, 946, L47
7 Parker Solar Probe Observations of High Plasma β Solar Wind from the Streamer Belt
Huang, Jia, Kasper, J. C., Larson, Davin E., McManus, Michael D., Whittlesey, P., Livi, Roberto, Rahmati, Ali, Romeo, Orlando, Klein, K. G., Sun, Weijie, van der Holst, Bart, Huang, Zhenguang, Jian, Lan K., Szabo, Adam, Verniero, J. L., Chen, C. H. K., Lavraud, B., Liu, Mingzhe, Badman, Samuel T., Niembro, Tatiana, Paulson, Kristoff, Stevens, M., Case, A. W., Pulupa, Marc, Bale, Stuart D. & Halekas, J. S., 2023, ApJS, 265, 47
6 Initiation of CMEs by Magnetic Flux Emergence
Dubey, Govind, van der Holst, Bart & Poedts, Stefaan, 2006, Journal of Astrophysics and Astronomy, 27, 159
6 Theory of Magnetic Switchbacks Fully Supported by Parker Solar Probe Observations
Toth, Gabor, Velli, Marco & van der Holst, Bart, 2023, ApJ, 957, 95
5 Solar Wind Driven from GONG Magnetograms in the Last Solar Cycle
Huang, Zhenguang, Tóth, Gábor, Sachdeva, Nishtha & van der Holst, Bart, 2024, ApJ, 965, 1
5 Analytic Model and Magnetohydrodynamic Simulations of Three-dimensional Magnetic Switchbacks
Shi, Chen, Velli, Marco, Toth, Gabor, Zhang, Kun, Tenerani, Anna, Huang, Zesen, Sioulas, Nikos & van der Holst, Bart, 2024, ApJ, 964, L28
4 Nonequilibrium Ionization Effects on Synthetic Spectra in the AWSoM Solar Corona
Szente, J., Landi, E. & van der Holst, B., 2023, ApJS, 269, 37
4 Jet Stability: A Computational Survey
Keppens, Rony, Meliani, Zakaria, Baty, Hubert & van der Holst, Bart, 2009, Jets From Young Stars V (Editors: Gracia, José, de Colle, Fabio & Downes, Turlough), p.179
3 AWSoM Magnetohydrodynamic Simulation of a Solar Active Region. II. Statistical Analysis of Alfvén Wave Dissipation and Reflection, Scaling Laws, and Energy Budget on Coronal Loops
Shi, Tong, Manchester, Ward, Landi, Enrico, van der Holst, Bart, Szente, Judit, Chen, Yuxi, Tóth, Gábor, Bertello, Luca & Pevtsov, Alexander, 2024, ApJ, 961, 60
2 Simulating Compressive Stream Interaction Regions during Parker Solar Probe's First Perihelion Using Stream-aligned Magnetohydrodynamics
Wraback, E. M., Hoffmann, A. P., Manchester, W. B., Sokolov, I. V., van der Holst, B. & Carpenter, D., 2024, ApJ, 962, 182
2 Adjusting the Potential Field Source Surface Height Based on Magnetohydrodynamic Simulations
Huang, Zhenguang, Tóth, Gábor, Huang, Jia, Sachdeva, Nishtha, van der Holst, Bart & Manchester, Ward B., 2024, ApJ, 965, L1
1 Numerical Modeling of Energetic Charged-particle Transport with SPECTRUM Software: General Approach and Artificial Effects due to Field Discretization
Guzmán, J. G. Alonso, Florinski, V., Tóth, G., Sharma, S., van der Holst, B. & Opher, M., 2024, ApJS, 272, 46
1 New numerical tools to study waves and instabilities of flowing plasmas
Belien, A. J. C., Botchev, M. A., Goedbloed, J. P., van der Holst, B. & Keppens, R., 2002, Computer Physics Communications, 147, 497
1 Modeling the Solar Wind During Different Phases of the Last Solar Cycle
Huang, Zhenguang, Toth, Gabor, Sachdeva, Nishtha, Zhao, Lulu, van der Holst, Bart, Sokolov, Igor, Manchester, Ward & Gombosi, Tamas, 2022, essoar.10512539
0 Investigating a Solar Wind Stream Interaction Region using Interplanetary Spacecraft Radio Signals: A Magnetohydrodynamic Simulation Study
Wexler, David B., Manchester, Ward B., Jian, Lan K., Wilson, Lynn B., Gopalswamy, Natchimuthuk, Song, Paul, Kooi, Jason E., van der Holst, Bart & Jensen, Elizabeth A., 2023, ApJ, 955, 90
0 Can One Predict Coronal Mass Ejection Arrival Times with Thirty-Minute Accuracy?
Toth, Gabor, van der Holst, Bartholomeus & Beecher, Ward Manchester, IV, 2023, essoar.167751578
0 Solar Wind with Field Lines and Energetic Particles (SOFIE) Model: Application to Historical Solar Energetic Particle Events
Zhao, Lulu, Sokolov, Igor V., Gombosi, Tamas I., Lario, David, Whitman, Kathryn, Huang, Zhenguang, Toth, Gabor, Beecher Manchester, Ward, IV, van der Holst, Bartholomeus & Sachdeva, Nishtha, 2023, 169603574.40060640
0 Global Sensitivity Analysis and Uncertainty Quantification for Background Solar Wind using the Alfvén Wave Solar Atmosphere Model
Jivani, Aniket, Sachdeva, Nishtha, Huang, Zhenguang, Chen, Yang, van der Holst, Bart, Manchester, Ward, Iong, Daniel, Chen, Hongfan, Zou, Shasha, Huan, Xun & Toth, Gabor, 2022, essoar.10512216


Created on Thu May 22 04:31:23 2025.