Publications of D. Burgess ordered by citations


A list of publications authored or co-authored by D. Burgess, derived from the SAO/NASA Astrophysics Data System (ADS) and ordered by the numbers of citations.

Orcid ID: 0000-0002-8175-9056

Number of papers: 145
No. of citations: 6523

808 The FIELDS Instrument Suite for Solar Probe Plus. Measuring the Coronal Plasma and Magnetic Field, Plasma Waves and Turbulence, and Radio Signatures of Solar Transients
Bale, S. D., Goetz, K., Harvey, P. R., Turin, P., Bonnell, J. W., Dudok de Wit, T., Ergun, R. E., MacDowall, R. J., Pulupa, M., Andre, M., Bolton, M., Bougeret, J.-L., Bowen, T. A., Burgess, D., Cattell, C. A., Chandran, B. D. G., Chaston, C. C., Chen, C. H. K., Choi, M. K., Connerney, J. E., Cranmer, S., Diaz-Aguado, M., Donakowski, W., Drake, J. F., Farrell, W. M., Fergeau, P., Fermin, J., Fischer, J., Fox, N., Glaser, D., Goldstein, M., Gordon, D., Hanson, E., Harris, S. E., Hayes, L. M., Hinze, J. J., Hollweg, J. V., Horbury, T. S., Howard, R. A., Hoxie, V., Jannet, G., Karlsson, M., Kasper, J. C., Kellogg, P. J., Kien, M., Klimchuk, J. A., Krasnoselskikh, V. V., Krucker, S., Lynch, J. J., Maksimovic, M., Malaspina, D. M., Marker, S., Martin, P., Martinez-Oliveros, J., McCauley, J., McComas, D. J., McDonald, T., Meyer-Vernet, N., Moncuquet, M., Monson, S. J., Mozer, F. S., Murphy, S. D., Odom, J., Oliverson, R., Olson, J., Parker, E. N., Pankow, D., Phan, T., Quataert, E., Quinn, T., Ruplin, S. W., Salem, C., Seitz, D., Sheppard, D. A., Siy, A., Stevens, K., Summers, D., Szabo, A., Timofeeva, M., Vaivads, A., Velli, M., Yehle, A., Werthimer, D. & Wygant, J. R., 2016, Space Science Reviews, 204, 49
547 Highly structured slow solar wind emerging from an equatorial coronal hole
Bale, S. D., Badman, S. T., Bonnell, J. W., Bowen, T. A., Burgess, D., Case, A. W., Cattell, C. A., Chandran, B. D. G., Chaston, C. C., Chen, C. H. K., Drake, J. F., de Wit, T. Dudok, Eastwood, J. P., Ergun, R. E., Farrell, W. M., Fong, C., Goetz, K., Goldstein, M., Goodrich, K. A., Harvey, P. R., Horbury, T. S., Howes, G. G., Kasper, J. C., Kellogg, P. J., Klimchuk, J. A., Korreck, K. E., Krasnoselskikh, V. V., Krucker, S., Laker, R., Larson, D. E., MacDowall, R. J., Maksimovic, M., Malaspina, D. M., Martinez-Oliveros, J., McComas, D. J., Meyer-Vernet, N., Moncuquet, M., Mozer, F. S., Phan, T. D., Pulupa, M., Raouafi, N. E., Salem, C., Stansby, D., Stevens, M., Szabo, A., Velli, M., Woolley, T. & Wygant, J. R., 2019, Nature, 576, 237
271 The Evolution and Role of Solar Wind Turbulence in the Inner Heliosphere
Chen, C. H. K., Bale, S. D., Bonnell, J. W., Borovikov, D., Bowen, T. A., Burgess, D., Case, A. W., Chandran, B. D. G., de Wit, T. Dudok, Goetz, K., Harvey, P. R., Kasper, J. C., Klein, K. G., Korreck, K. E., Larson, D., Livi, R., MacDowall, R. J., Malaspina, D. M., Mallet, A., McManus, M. D., Moncuquet, M., Pulupa, M., Stevens, M. L. & Whittlesey, P., 2020, ApJS, 246, 53
268 The Solar Orbiter magnetometer
Horbury, T. S., O'Brien, H., Carrasco Blazquez, I., Bendyk, M., Brown, P., Hudson, R., Evans, V., Oddy, T. M., Carr, C. M., Beek, T. J., Cupido, E., Bhattacharya, S., Dominguez, J.-A., Matthews, L., Myklebust, V. R., Whiteside, B., Bale, S. D., Baumjohann, W., Burgess, D., Carbone, V., Cargill, P., Eastwood, J., Erdös, G., Fletcher, L., Forsyth, R., Giacalone, J., Glassmeier, K.-H., Goldstein, M. L., Hoeksema, T., Lockwood, M., Magnes, W., Maksimovic, M., Marsch, E., Matthaeus, W. H., Murphy, N., Nakariakov, V. M., Owen, C. J., Owens, M., Rodriguez-Pacheco, J., Richter, I., Riley, P., Russell, C. T., Schwartz, S., Vainio, R., Velli, M., Vennerstrom, S., Walsh, R., Wimmer-Schweingruber, R. F., Zank, G., Müller, D., Zouganelis, I. & Walsh, A. P., 2020, A&A, 642, A9
205 Observations of Short Large-Amplitude Magnetic Structures at a Quasi-Parallel Shock
Schwartz, Steven J., Burgess, David, Wilkinson, William P., Kessel, Ramona L., Dunlop, Malcolm & Luehr, Herman, 1992, Journal of Geophysical Research, 97, 4209
203 Quasi-parallel shocks: A patchwork of three-dimensional structures
Schwartz, Steven J. & Burgess, David, 1991, Geophysical Research Letters, 18, 373
174 Cyclic behavior at quasi-parallel collisionless shocks
Burgess, D., 1989, Geophysical Research Letters, 16, 345
167 Low-frequency waves in the Earthś magnetosheath: present status
Schwartz, S. J., Burgess, D. & Moses, J. J., 1996, Annales Geophysicae, 14, 1134
163 Quasi-perpendicular Shock Structure and Processes
Bale, S. D., Balikhin, M. A., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Möbius, E., Walker, S. N., Balogh, A., Burgess, D., Lembège, B., Lucek, E. A., Scholer, M., Schwartz7 10, S. J. & Thomsen, M. F., 2005, Space Science Reviews, 118, 161
131 Quasi-parallel Shock Structure and Processes
Burgess, D., Lucek, E. A., Scholer, M., Bale, S. D., Balikhin, M. A., Balogh, A., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Lembège, B., Möbius, E., Schwartz, S. J., Thomsen, M. F. & Walker, S. N., 2005, Space Science Reviews, 118, 205
121 Ion Acceleration at the Earth's Bow Shock
Burgess, D., Möbius, E. & Scholer, M., 2012, Space Science Reviews, 173, 5
113 Three spacecraft observations of solar wind discontinuities
Horbury, Timothy S., Burgess, David, Fränz, Markus & Owen, Christopher J., 2001, Geophysical Research Letters, 28, 677
106 Ion distributions and thermalization at perpendicular and quasi-perpendicular supercritical collisionless shocks
Burgess, D., Wilkinson, W. P. & Schwartz, S. J., 1989, Journal of Geophysical Research, 94, 8783
102 Hybrid simulations of protons strongly accelerated by a parallel collisionless shock
Giacalone, J., Burgess, D., Schwartz, S. J. & Ellison, Donald C., 1992, Geophysical Research Letters, 19, 433
94 The properties and causes of rippling in quasi-perpendicular collisionless shock fronts
Lowe, R. E. & Burgess, D., 2003, Annales Geophysicae, 21, 671
90 Electron vortex magnetic holes: A nonlinear coherent plasma structure
Haynes, Christopher T., Burgess, David, Camporeale, Enrico & Sundberg, Torbjorn, 2015, Physics of Plasmas, 22, 012309
80 Collisionless Shocks in Space Plasmas
Burgess, David & Scholer, Manfred, 2015,
69 On the effect of a tangential discontinuity on ions specularly reflected at an oblique shock
Burgess, D., 1989, Journal of Geophysical Research, 94, 472
68 Ion Injection and Acceleration at Parallel Shocks: Comparisons of Self-consistent Plasma Simulations with Existing Theories
Giacalone, J., Burgess, D., Schwartz, S. J. & Ellison, Donald C., 1993, ApJ, 402, 550
68 Electron firehose instability: Kinetic linear theory and two-dimensional particle-in-cell simulations
Camporeale, Enrico & Burgess, David, 2008, Journal of Geophysical Research (Space Physics), 113, A07107
68 The role of upstream waves in supercritical quasi-parallel shock re-formation
Scholer, M. & Burgess, D., 1992, Journal of Geophysical Research, 97, 8319
67 Electron acceleration at nearly perpendicular collisionless shocks. I - One-dimensional simulations without electron scale fluctuations
Krauss-Varban, D., Burgess, D. & Wu, C. S., 1989, Journal of Geophysical Research, 94, 15089
66 Simulations of Electron Acceleration at Collisionless Shocks: The Effects of Surface Fluctuations
Burgess, D., 2006, ApJ, 653, 316
63 Properties and origin of subproton-scale magnetic holes in the terrestrial plasma sheet
Sundberg, T., Burgess, D. & Haynes, C. T., 2015, Journal of Geophysical Research (Space Physics), 120, 2600
57 The Dissipation of Solar Wind Turbulent Fluctuations at Electron Scales
Camporeale, Enrico & Burgess, David, 2011, ApJ, 730, 114
56 Simulations of backstreaming ion beams formed at oblique shocks by direct reflection
Burgess, D., 1987, Annales Geophysicae, 5, 133
56 MMS Observations and Hybrid Simulations of Surface Ripples at a Marginally Quasi-Parallel Shock
Gingell, Imogen, Schwartz, Steven J., Burgess, David, Johlander, Andreas, Russell, Christopher T., Burch, James L., Ergun, Robert E., Fuselier, Stephen, Gershman, Daniel J., Giles, Barbara L., Goodrich, Katherine A., Khotyaintsev, Yuri V., Lavraud, Benoit, Lindqvist, Per-Arne, Strangeway, Robert J., Trattner, Karlheinz, Torbert, Roy B., Wei, Hanying & Wilder, Frederick, 2017, Journal of Geophysical Research (Space Physics), 122, 11,003
54 ISEE observations of radiation at twice the solar wind plasma frequency.
Lacombe, C., Harvey, C. C., Hoang, S., Mangeney, A., Steinberg, J. L. & Burgess, D., 1988, Annales Geophysicae, 6, 113
51 Quasiperpendicular High Mach Number Shocks
Sulaiman, A. H., Masters, A., Dougherty, M. K., Burgess, D., Fujimoto, M. & Hospodarsky, G. B., 2015, Physical Review Letters, 115, 125001
51 Shock front instability associated with reflected ions at the perpendicular shock
Burgess, D. & Scholer, M., 2007, Physics of Plasmas, 14, 012108
50 Reconnection and Electron Temperature Anisotropy in Sub-proton Scale Plasma Turbulence
Haynes, C. T., Burgess, D. & Camporeale, E., 2014, ApJ, 783, 38
50 Magnetic field depressions in the solar wind
Fränz, M., Burgess, D. & Horbury, T. S., 2000, Journal of Geophysical Research, 105, 12725
50 Injection and acceleration of thermal protons at quasi-parallel shocks: A hybrid simulation parameter survey
Giacalone, J., Burgess, D., Schwartz, S. J., Ellison, Donald C. & Bennett, Lee, 1997, Journal of Geophysical Research, 102, 19789
50 Electron acceleration at nearly perpendicular collisionless shocks 2. Reflection at curved shocks
Krauss-Varban, D. & Burgess, D., 1991, Journal of Geophysical Research, 96, 143
48 Observations of suprathermal ions in association with SLAMS
Giacalone, Joe, Schwartz, Steven J. & Burgess, David, 1993, Geophysical Research Letters, 20, 149
48 Electron acceleration at quasi-perpendicular shocks in sub- and supercritical regimes: 2D and 3D simulations
Trotta, D. & Burgess, D., 2019, MNRAS, 482, 1154
47 Shock drift acceleration at low energies
Burgess, David, 1987, Journal of Geophysical Research, 92, 1119
46 Colliding plasma structures: Current sheet and perpendicular shock
Burgess, D. & Schwartz, S. J., 1988, Journal of Geophysical Research, 93, 11327
44 Turbulence Heating ObserveR - satellite mission proposal
Vaivads, A., Retinò, A., Soucek, J., Khotyaintsev, Yu. V., Valentini, F., Escoubet, C. P., Alexandrova, O., André, M., Bale, S. D., Balikhin, M., Burgess, D., Camporeale, E., Caprioli, D., Chen, C. H. K., Clacey, E., Cully, C. M., de Keyser, J., Eastwood, J. P., Fazakerley, A. N., Eriksson, S., Goldstein, M. L., Graham, D. B., Haaland, S., Hoshino, M., Ji, H., Karimabadi, H., Kucharek, H., Lavraud, B., Marcucci, F., Matthaeus, W. H., Moore, T. E., Nakamura, R., Narita, Y., Nemecek, Z., Norgren, C., Opgenoorth, H., Palmroth, M., Perrone, D., Pinçon, J.-L., Rathsman, P., Rothkaehl, H., Sahraoui, F., Servidio, S., Sorriso-Valvo, L., Vainio, R., Vörös, Z. & Wimmer-Schweingruber, R. F., 2016, Journal of Plasma Physics, 82, 905820501
44 What do we really know about upstream waves?
Burgess, D., 1997, Advances in Space Research, 20, 673
43 On the amplitude of intense Langmuir waves in the terrestrial electron foreshock
Bale, S. D., Burgess, D., Kellogg, P. J., Goetz, K. & Monson, S. J., 1997, Journal of Geophysical Research, 102, 11281
43 Ripples observed on the surface of the Earth's quasi-perpendicular bow shock
Moullard, O., Burgess, D., Horbury, T. S. & Lucek, E. A., 2006, Journal of Geophysical Research (Space Physics), 111, A09113
42 Phase coupling in Langmuir wave packets: Possible evidence of three-wave interactions in the upstream solar wind
Bale, S. D., Burgess, D., Kellogg, P. J., Goetz, K., Howard, R. L. & Monson, S. J., 1996, Geophysical Research Letters, 23, 109
41 Microphysics of Quasi-parallel Shocks in Collisionless Plasmas
Burgess, D. & Scholer, M., 2013, Space Science Reviews, 178, 513
41 Simulations of particle acceleration in parallel shocks: Direct comparison between Monte Carlo and one-dimensional hybrid codes
Ellison, Donald C., Giacalone, J., Burgess, D. & Schwartz, S. J., 1993, Journal of Geophysical Research, 98, 21085
40 The dynamics and upstream distributions of ions reflected at the earth's bow shock
Burgess, D. & Schwartz, S. J., 1984, Journal of Geophysical Research, 89, 7407
38 Phase space transport in the interaction between shocks and plasma turbulence
Trotta, Domenico, Valentini, Francesco, Burgess, David & Servidio, Sergio, 2021, Proceedings of the National Academy of Science, 118, e2026764118
38 Microstructure in two- and three-dimensional hybrid simulations of perpendicular collisionless shocks
Burgess, David, Hellinger, Petr, Gingell, Imogen & Trávníček, Pavel M., 2016, Journal of Plasma Physics, 82, 905820401
37 Alpha particles in field-aligned beams upstream of the bow shock: Simulations
Burgess, D., 1989, Geophysical Research Letters, 16, 163
36 The formation of reverse shocks in magnetized high energy density supersonic plasma flows
Lebedev, S. V., Suttle, L., Swadling, G. F., Bennett, M., Bland, S. N., Burdiak, G. C., Burgess, D., Chittenden, J. P., Ciardi, A., Clemens, A., de Grouchy, P., Hall, G. N., Hare, J. D., Kalmoni, N., Niasse, N., Patankar, S., Sheng, L., Smith, R. A., Suzuki-Vidal, F., Yuan, J., Frank, A., Blackman, E. G. & Drake, R. P., 2014, Physics of Plasmas, 21, 056305
35 Whistler waves, core ion heating, and nonstationarity in oblique collisionless shocks
Scholer, Manfred & Burgess, David, 2007, Physics of Plasmas, 14, 072103
35 First Observations of Irregular Surface of Interplanetary Shocks at Ion Scales by Cluster
Kajdič, Primož, Preisser, Luis, Blanco-Cano, Xóchitl, Burgess, David & Trotta, Domenico, 2019, ApJ, 874, L13
35 Foreshock-shock interaction at collisionless quasi-parallel shocks
Burgess, D., 1995, Advances in Space Research, 15, 159
34 Whistler waves, Langmuir waves and single loss cone electron distributions inside a magnetic cloud: Observations
Moullard, O., Burgess, D., Salem, C., Mangeney, A., Larson, D. E. & Bale, S. D., 2001, Journal of Geophysical Research, 106, 8301
34 Intense Electric Fields and Electron-Scale Substructure Within Magnetotail Flux Ropes as Revealed by the Magnetospheric Multiscale Mission
Stawarz, J. E., Eastwood, J. P., Genestreti, K. J., Nakamura, R., Ergun, R. E., Burgess, D., Burch, J. L., Fuselier, S. A., Gershman, D. J., Giles, B. L., Le Contel, O., Lindqvist, P.-A., Russell, C. T. & Torbert, R. B., 2018, Geophysical Research Letters, 45, 8783
33 On the Transmission of Turbulent Structures across the Earth's Bow Shock
Trotta, Domenico, Pecora, Francesco, Settino, Adriana, Perrone, Denise, Hietala, Heli, Horbury, Timothy, Matthaeus, William, Burgess, David, Servidio, Sergio & Valentini, Francesco, 2022, ApJ, 933, 167
32 Anisotropic Electron Heating in Turbulence-driven Magnetic Reconnection in the Near-Sun Solar Wind
Franci, Luca, Papini, Emanuele, Micera, Alfredo, Lapenta, Giovanni, Hellinger, Petr, Sarto, Daniele Del, Burgess, David & Landi, Simone, 2022, ApJ, 936, 27
32 Three-dimensional modelling of the shock-turbulence interaction
Trotta, D., Pezzi, O., Burgess, D., Preisser, L., Blanco-Cano, X., Kajdic, P., Hietala, H., Horbury, T. S., Vainio, R., Dresing, N., Retinò, A., Marcucci, M. F., Sorriso-Valvo, L., Servidio, S. & Valentini, F., 2023, MNRAS, 525, 1856
31 Simultaneous observation of fundamental and second harmonic radio emission from the terrestrial foreshock
Burgess, D., Harvey, C. C., Steinberg, J.-L. & Lacombe, C., 1987, Nature, 330, 732
30 On the theoretical/observational comparison of field-aligned ion beams in the earth's foreshock
Schwartz, S. J. & Burgess, D., 1984, Journal of Geophysical Research, 89, 2381
30 Ion Acceleration at the Quasi-parallel Bow Shock: Decoding the Signature of Injection
Sundberg, Torbjörn, Haynes, Christopher T., Burgess, D. & Mazelle, Christian X., 2016, ApJ, 820, 21
30 Fast Acceleration of Transrelativistic Electrons in Astrophysical Turbulence
Trotta, Domenico, Franci, Luca, Burgess, David & Hellinger, Petr, 2020, ApJ, 894, 136
29 Observations of electron distributions in magnetosheath mirror mode waves
Chisham, G., Burgess, D., Schwartz, S. J. & Dunlop, M. W., 1998, Journal of Geophysical Research, 103, 26765
28 Electron dynamics and whistler waves at quasi-perpendicular shocks
Krauss-Varban, D., Pantellini, F. G. E. & Burgess, D., 1995, Geophysical Research Letters, 22, 2091
27 Ion distributions associated with mirror waves in the earth's magnetosheath
Leckband, J. A., Burgess, D., Pantellini, F. G. E. & Schwartz, S. J., 1995, Advances in Space Research, 15, 345
27 Modeling MMS Observations at the Earth's Magnetopause with Hybrid Simulations of Alfvénic Turbulence
Franci, Luca, Stawarz, Julia E., Papini, Emanuele, Hellinger, Petr, Nakamura, Takuma, Burgess, David, Landi, Simone, Verdini, Andrea, Matteini, Lorenzo, Ergun, Robert, Le Contel, Olivier & Lindqvist, Per-Arne, 2020, ApJ, 898, 175
27 The Dynamics of Very High Alfvén Mach Number Shocks in Space Plasmas
Sundberg, Torbjörn, Burgess, David, Scholer, Manfred, Masters, Adam & Sulaiman, Ali H., 2017, ApJ, 836, L4
25 Implications of a Non-modal Linear Theory for the Marginal Stability State and the Dissipation of Fluctuations in the Solar Wind
Camporeale, Enrico, Passot, Thierry & Burgess, David, 2010, ApJ, 715, 260
23 Magnetosheath Jets and Plasmoids: Characteristics and Formation Mechanisms from Hybrid Simulations
Preisser, Luis, Blanco-Cano, Xóchitl, Kajdič, Primoz, Burgess, David & Trotta, Domenico, 2020, ApJ, 900, L6
23 Magnetic field rotations in the solar wind at kinetic scales
Chen, C. H. K., Matteini, L., Burgess, D. & Horbury, T. S., 2015, MNRAS, 453, L64
21 Energetic Particles Associated with a Coronal Mass Ejection Shock Interacting with a Convected Magnetic Structure
Giacalone, J., Burgess, D., Bale, S. D., Desai, M. I., Mitchell, J. G., Lario, D., Chen, C. H. K., Christian, E. R., de Nolfo, G. A., Hill, M. E., Matthaeus, W. H., McComas, D. J., McNutt, R. L., Mitchell, D. G., Roelof, E. C., Schwadron, N. A., Getachew, Tibebu & Joyce, C. J., 2021, ApJ, 921, 102
20 The Three-dimensional Evolution of Ion-scale Current Sheets: Tearing and Drift-kink Instabilities in the Presence of Proton Temperature Anisotropy
Gingell, P. W., Burgess, D. & Matteini, L., 2015, ApJ, 802, 4
20 Multiple Current Sheet Systems in the Outer Heliosphere: Energy Release and Turbulence
Burgess, D., Gingell, P. W. & Matteini, L., 2016, ApJ, 822, 38
20 Interaction between inclined current sheets and the heliospheric termination shock
Giacalone, Joe & Burgess, David, 2010, Geophysical Research Letters, 37, L19104
20 Explosive Particle Dispersion in Plasma Turbulence
Servidio, S., Haynes, C. T., Matthaeus, W. H., Burgess, D., Carbone, V. & Veltri, P., 2016, Physical Review Letters, 117, 095101
19 Ion diffusion and acceleration in plasma turbulence
Pecora, F., Servidio, S., Greco, A., Matthaeus, W. H., Burgess, D., Haynes, C. T., Carbone, V. & Veltri, P., 2018, Journal of Plasma Physics, 84, 725840601
19 Cluster at the Bow Shock: Introduction
Balogh, A., Schwartz, S. J., Bale, S. D., Balikhin, M. A., Burgess, D., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Lembège, B., Lucek, E. A., Möbius, E., Scholer, M., Thomsen, M. F. & Walker, S. N., 2005, Space Science Reviews, 118, 155
18 Particle transport in hybrid PIC shock simulations: A comparison of diagnostics
Trotta, D., Burgess, D., Prete, G., Perri, S. & Zimbardo, G., 2020, MNRAS, 491, 580
18 Prediction of Earth arrival times of interplanetary southward magnetic field turnings
Horbury, T. S., Burgess, D., Fränz, M. & Owen, C. J., 2001, Journal of Geophysical Research, 106, 30001
18 A Case for Electron-Astrophysics
Verscharen, Daniel, Wicks, Robert T., Alexandrova, Olga, Bruno, Roberto, Burgess, David, Chen, Christopher H. K., D'Amicis, Raffaella, De Keyser, Johan, de Wit, Thierry Dudok, Franci, Luca, He, Jiansen, Henri, Pierre, Kasahara, Satoshi, Khotyaintsev, Yuri, Klein, Kristopher G., Lavraud, Benoit, Maruca, Bennett A., Maksimovic, Milan, Plaschke, Ferdinand, Poedts, Stefaan, Reynolds, Christopher S., Roberts, Owen, Sahraoui, Fouad, Saito, Shinji, Salem, Chadi S., Saur, Joachim, Servidio, Sergio, Stawarz, Julia E., Štverák, Štěpán & Told, Daniel, 2022, Experimental Astronomy, 54, 473
18 Multisatellite observations of large magnetic depressions in the solar wind
Chisham, G., Schwartz, S. J., Burgess, D., Bale, S. D., Dunlop, M. W. & Russell, C. T., 2000, Journal of Geophysical Research, 105, 2325
17 Pickup protons at quasi-perpendicular shocks: full particle electrodynamic simulations
Matsukiyo, S., Scholer, M. & Burgess, D., 2007, Annales Geophysicae, 25, 283
17 On the non-linear mirror instability
Pantellini, F. G. E., Burgess, D. & Schwartz, S. J., 1995, Advances in Space Research, 15, 341
17 Particle acceleration at coronal mass ejection-driven interplanetary shocks and the Earth's bow shock
Desai, M. I. & Burgess, D., 2008, Journal of Geophysical Research (Space Physics), 113, A00B06
16 Electron Temperature Anisotropy in an Expanding Plasma: Particle-in-Cell Simulations
Camporeale, E. & Burgess, D., 2010, ApJ, 710, 1848
16 Particle Acceleration at the Earth's Bow Shock
Burgess, David, 2007, Lecture Notes in Physics, Berlin Springer Verlag (Editors: Klein, Karl-Ludwig & MacKinnon, Alexander L.), p.161
16 ULF Wave Transmission Across Collisionless Shocks: 2.5D Local Hybrid Simulations
Kajdič, P., Pfau-Kempf, Y., Turc, L., Dimmock, A. P., Palmroth, M., Takahashi, K., Kilpua, E., Soucek, J., Takahashi, N., Preisser, L., Blanco-Cano, X., Trotta, D. & Burgess, D., 2021, Journal of Geophysical Research (Space Physics), 126, e29283
16 Nonthermal ions and assoicated magnetic field behavior at a quasi-parallel earth's bow shock
Wilkinson, W. P., Pardaens, A. K., Schwartz, S. J., Burgess, D., Luehr, H., Kessel, R. L., Dunlop, M. & Farrugia, C. J., 1993, Journal of Geophysical Research, 98, 3889
15 An in situ Comparison of Electron Acceleration at Collisionless Shocks under Differing Upstream Magnetic Field Orientations
Masters, A., Sulaiman, A. H., Stawarz, Ł., Reville, B., Sergis, N., Fujimoto, M., Burgess, D., Coates, A. J. & Dougherty, M. K., 2017, ApJ, 843, 147
15 Ion acceleration at parallel shocks: self-consistent plasma simulations.
Giacalone, J., Burgess, D. & Schwartz, S. J., 1992, Study of the Solar-Terrestrial System (Editors: Hunt, James J.), ESA Special Publication, 346, p. 65
15 Influence of He++ and Shock Geometry on Interplanetary Shocks in the Solar Wind: 2D Hybrid Simulations
Preisser, L., Blanco-Cano, X., Trotta, D., Burgess, D. & Kajdič, P., 2020, Journal of Geophysical Research (Space Physics), 125, e27442
15 Artificial spacecraft in hybrid simulations of the quasi-parallel Earth's bow shock: Analysis of time series versus spatial profiles and a separation strategy for Cluster
Giacalone, J., Schwartz, S. J. & Burgess, D., 1994, Annales Geophysicae, 12, 591
14 Coherent wave activity in Mercury's magnetosheath
Sundberg, Torbjörn, Boardsen, Scott A., Burgess, David & Slavin, James A., 2015, Journal of Geophysical Research (Space Physics), 120, 7342
14 Transient growth in stable collisionless plasma
Camporeale, Enrico, Burgess, David & Passot, Thierry, 2009, Physics of Plasmas, 16, 030703
13 Transition scale at quasiperpendicular collisionless shocks: Full particle electromagnetic simulations
Scholer, Manfred & Burgess, David, 2006, Physics of Plasmas, 13, 062101
13 Scatter-free propagation of low-energy protons in the magnetosheath: Implications for the production of field-aligned ion beams by nonthermal leakage
Burgess, D. & Luhmann, J. G., 1986, Journal of Geophysical Research, 91, 1439
12 Whistler waves observed during an in-situ solar type III radio burst
Moullard, O., Burgess, D. & Bale, S. D., 1998, A&A, 335, 703
12 Interpreting multipoint observations of substructure at the quasi-perpendicular bow shock: Simulations
Burgess, D., 2006, Journal of Geophysical Research (Space Physics), 111, A10210
10 Parsek2D: An Implicit Parallel Particle-in-Cell Code
Markidis, S., Camporeale, E., Burgess, D., Rizwan-Uddin & Lapenta, G., 2009, Numerical Modeling of Space Plasma Flows: ASTRONUM-2008 (Editors: Pogorelov, N. V., Audit, E., Colella, P. & Zank, G. P.), Astronomical Society of the Pacific Conference Series, 406, p. 237
10 Direct Evidence for Magnetic Reflection of Heavy Ions from High Mach Number Collisionless Shocks
Madanian, Hadi, Schwartz, Steven J., Fuselier, Stephen A., Burgess, David, Turner, Drew L., Chen, Li-Jen, Desai, Mihir I. & Starkey, Michael J., 2021, ApJ, 915, L19
10 Energetic electrons downstream of Earth's bow shock: Simulations of acceleration by shock structure
Lowe, R. E. & Burgess, D., 2000, Geophysical Research Letters, 27, 3249
8 The impact of a hot sodium ion population on the growth of the Kelvin-Helmholtz instability in Mercury's magnetotail
Gingell, P. W., Sundberg, T. & Burgess, D., 2015, Journal of Geophysical Research (Space Physics), 120, 5432
8 Parametric study of magnetosheath jets in 2D local hybrid simulations
Tinoco-Arenas, Arturo, Kajdič, Primož, Preisser, Luis, Blanco-Cano, Xóchitl, Trotta, Domenico & Burgess, David, 2022, Frontiers in Astronomy and Space Sciences, 9, 5
8 Three-dimensional simulations of sheared current sheets: transition to turbulence?
Gingell, Imogen, Sorriso-Valvo, Luca, Burgess, David, De Vita, Gaetano & Matteini, Lorenzo, 2017, Journal of Plasma Physics, 83, 705830104
8 Statistical Analysis of Ions in Two-Dimensional Plasma Turbulence
Pecora, Francesco, Pucci, Francesco, Lapenta, Giovanni, Burgess, David & Servidio, Sergio, 2019, Solar Physics, 294, 114
8 The anisotropy variations of electron distributions in the terrestrial ion foreshock
Chisham, G., Schwartz, S. J. & Burgess, D., 1996, Journal of Geophysical Research, 101, 445
7 Phase space evolution in linear instabilities
Pantellini, F. G. E., Burgess, D. & Schwartz, S. J., 1994, Physics of Plasmas, 1, 3784
6 Quasi-parallel Shock Structure and Processes
Burgess, D., Lucek, E. A., Scholer, M., Bale, S. D., Balikhin, M. A., Balogh, A., Horbury, sa T. S., Krasnoselskikh, V. V., Kucharek, H., Lembège, B., Möbius, E., Schwartz, S. J., Thomsen, M. F. & Walker, S. N., 2005, Outer Magnetospheric Boundaries: Cluster Results (Editors: Paschmann, Goetz, Schwartz, S. J., Escoubet, C. P. & Haaland, S.), p.205
6 Introduction
Burgess, David, 1986, Advances in Space Research, 6, 63
6 A Case for Electron-Astrophysics
Verscharen, Daniel, Wicks, Robert T., Alexandrova, Olga, Bruno, Roberto, Burgess, David, Chen, Christopher H. K., D'Amicis, Raffaella, De Keyser, Johan, Dudok de Wit, Thierry, Franci, Luca, He, Jiansen, Henri, Pierre, Kasahara, Satoshi, Khotyaintsev, Yuri, Klein, Kristopher G., Lavraud, Benoit, Maruca, Bennett A., Maksimovic, Milan, Plaschke, Ferdinand, Poedts, Stefaan, Reynolds, Chirstopher S., Roberts, Owen, Sahraoui, Fouad, Saito, Shinji, Salem, Chadi S., Saur, Joachim, Servidio, Sergio, Stawarz, Julia E., Stverak, Stepan & Told, Daniel, 2019, arXiv:1908.02206
5 Multispacecraft Study of the Interaction Between an Interplanetary Shock and a Solar Wind Flux Rope
Blanco-Cano, X., Burgess, D., Sundberg, T. & Kajdič, P., 2019, Journal of Geophysical Research (Space Physics), 124, 9760
5 Temperature Anisotropy in the Presence of Ultra Low Frequency Waves in the Terrestrial Foreshock
Selzer, L. A., Hnat, B., Osman, K. T., Nakariakov, V. M., Eastwood, J. P. & Burgess, D., 2014, ApJ, 788, L5
4 Comparison of linear modes in kinetic plasma models
Camporeale, Enrico & Burgess, David, 2017, Journal of Plasma Physics, 83, 535830201
4 Microphysics of Quasi-parallel Shocks in Collisionless Plasmas
Burgess, D. & Scholer, M., 2014, Microphysics of Cosmic Plasmas (Editors: Balogh, André, Bykov, Andrei, Cargill, Peter, Dendy, Richard, Dudok de Wit, Thierry & Raymond, John), p.437
4 Comparing Quasi-Parallel and Quasi-Perpendicular Configuration in the Terrestrial Magnetosheath: Multifractal Analysis
Gurchumelia, Alexandre, Sorriso-Valvo, Luca, Burgess, David, Yordanova, Emiliya, Elbakidze, Khatuna, Kharshiladze, Oleg & Kvaratskhelia, Diana, 2022, Frontiers in Physics, 10, 903632
3 Cluster at the Bow Shock: Introduction
Balogh, A., Schwartz, S. J., Bale, S. D., Balikhin, M. A., Burgess, D., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Lembège, B., Lucek, E. A., Möbius, E., Scholer, M., Thomsen, M. F. & Walker, S. N., 2005, Outer Magnetospheric Boundaries: Cluster Results (Editors: Paschmann, Goetz, Schwartz, S. J., Escoubet, C. P. & Haaland, S.), p.155
3 A study of the transition to a turbulent shock using a coarse-graining approach to ion phase-space transport
Trotta, D., Valentini, F., Burgess, D. & Servidio, S., 2025, MNRAS, 536, 2825
3 Langmuir wave amplitudes and the electron distribution function near the solar wind-foreshock boundary
Bale, S. D., Chisham, G., Burgess, D. & Schwartz, S. J., 1997, Advances in Space Research, 20, 695
3 Virtual Instruments for Space Plasmas
Burgess, D., 1995, Proceedings of the Cluster Workshops, Data Analysis Tools and Physical Measurements and Mission-Oriented Theory (Editors: Glassmeier, K.-H., Motschmann, U. & Schmidt, R.), ESA Special Publication, 371, p. 179
3 Plasma Turbulence in the Near-Sun and Near-Earth Solar Wind: A Comparison via Observation-Driven 2D Hybrid Simulations
Franci, Luca, Papini, Emanuele, Del Sarto, Daniele, Hellinger, Petr, Burgess, David, Matteini, Lorenzo, Landi, Simone & Montagud-Camps, Victor, 2022, Universe, 8, 453
3 Cluster at the Bow Shock: Status and Outlook
Scholer, M., Thomsen, M. F., Burgess, D., Bale, S. D., Balikhin, M. A., Balogh, A., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Lucek, E. A., Lembège, B., Möbius, E., Schwartz, S. J. & Walker, S. N., 2005, Space Science Reviews, 118, 223
2 Energetic particle anisotropies and remote magnetic connection at high solar latitudes
Fränz, M., Burgess, D., Keppler, E., Reuss, M. K. & Blake, J. B., 1997, Advances in Space Research, 19, 855
2 Foreword
Burgess, David, Drake, James, Marsch, Eckart, Velli, Marco, von Steiger, Rudolf & Zurbuchen, Thomas H., 2012, Space Science Reviews, 172, 1
1 Ion Acceleration at the Earth's Bow Shock
Burgess, D., Möbius, E. & Scholer, M., 2013, Particle Acceleration in Cosmic Plasmas (Editors: Balogh, André, Bykov, Andrei, Lin, Robert P., Raymond, John & Scholer, Manfred), p.5
1 Mission-Oriented Modelling in Europe
Burgess, D., 1994, Solar-Terrestrial Energy Program (Editors: Baker, D. N., Papitashvili, V. O. & Teague, M. J.), p. 723
1 Simulations of ion acceleration at parallel shocks
Giacalone, J., Burgess, D., Schwartz, S. J. & Ellison, D. C., 1992, Particle Acceleration in Cosmic Plasmas (Editors: Zank, G. P. & Gaisser, T. K.), American Institute of Physics Conference Series, 264, p. 360
1 Simulations of collisionless shocks: Some implications for particle acceleration
Burgess, D., 1992, Particle Acceleration in Cosmic Plasmas (Editors: Zank, G. P. & Gaisser, T. K.), American Institute of Physics Conference Series, 264, p. 354
1 Shock Structure and its Effect on Electron Acceleration in Quasi-Perpendicular Shocks
Lowe, R. E. & Burgess, D., 1999, Magnetic Fields and Solar Processes (Editors: Wilson, A. & et al.), ESA Special Publication, 448, p. 1033
1 A large magnetic depression observed in the solar wind close to the earth's bow shock
Chisham, G., Bale, S. D., Burgess, D. & Schwartz, S. J., 1997, Advances in Space Research, 19, 869
1 Electron distributions in the ion foreshock
Chisham, G., Burgess, D. & Schwartz, S. J., 1995, Advances in Space Research, 15, 141
0 AMPTE-UKS ion observations at a quasi-parallel bow shock
Burgess, D., Coates, A. J., Kessel, R. L., Rodgers, D. J. & Dunlop, M. W., 1987, Small Scale Plasma Processes in the Solar Chromosphere/Corona, Interplanetary Medium and Planetary Magnetospheres (Editors: Battrick, B. & Rolfe, E. J.), ESA Special Publication, 275, p. 45
0 Solar Wind and Interstellar Medium Coupling
Burgess, D., 1997, European Meeting on Solar Physics (Editors: Simnett, George M., Alissandrakis, Constantine E. & Vlahos, Loukas), p.117
0 Electron acceleration at quasi-perpendicular shocks
Burgess, D. & Lowe, R. E., 2001, Space Plasma Simulation (Editors: Büchner, J., Dum, C. T. & Scholer, M.), p. 76
0 A Magnetometer For The Solar Orbiter Mission
Carr, C. M., Horbury, T. S., Balogh, A., Baumjohann, W., Bavassano, B., Breen, A., Burgess, D., Cargill, P. J., Brooker, N., Erdõs, G., Fletcher, L., Forsyth, R. J., Giacalone, J., Glassmeier, K.-H., Hoeksema, J. T., Goldstein, M. L., Lockwood, M., Magnes, W., Masimovic, M., Marsch, G., Matthaeus, W. H., Murphy, N., Nakariakov, V. M., Pacheco, J. R., Pincon, J.-L., Riley, P., Russell, C. T., Schwartz, S. J., Szabo, A., Thompson, M., Vainio, R., Velli, M., Vennerstrom, S., Walsh, R., Wimmer-Schweingruber, R. & Zank, G., 2007, Second Solar Orbiter Workshop (Editors: Marsch, E., Tsinganos, K., Marsden, R. & Conroy, L.), ESA Special Publication, 641, p. 41
0 Quasi-perpendicular Shock Structure and Processes
Bale, S. D., Balikhin, M. A., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Möbius, E., Walker, S. N., Balogh, A., Burgess, D., Lembège, B., Lucek, E. A., Scholer, M., Schwartz, S. J. & Thomsen, M. F., 2005, Outer Magnetospheric Boundaries: Cluster Results (Editors: Paschmann, Goetz, Schwartz, S. J., Escoubet, C. P. & Haaland, S.), p.161
0 A Software Instrument Investigation of Waves at Shocks
Wheeler, G. V., Woolliscroft, L. J. C., Burgess, D. H., Balikhin, M. A., Cornilleau-Werhlin, N. & Krasnosel'skikh, V. V., 1995, Proceedings of the Cluster Workshops, Data Analysis Tools and Physical Measurements and Mission-Oriented Theory (Editors: Glassmeier, K.-H., Motschmann, U. & Schmidt, R.), ESA Special Publication, 371, p. 279
0 Electron Acceleration and Structure in the Quasi-perpendicular Collisionless Shock
Burgess, D., 2005, The Physics of Collisionless Shocks: 4th Annual IGPP International Astrophysics Conference (Editors: Li, Gang, Zank, Gary P. & Russell, C. T.), American Institute of Physics Conference Series, 781, p. 17
0 Multi-scale Physics in Coronal Heating and Solar Wind Acceleration
Burgess, David, Drake, James, Marsch, Eckart, von Steiger, Rudolf, Velli, Marco & Zurbuchen, Thomas, 2013,
0 Foreword
Burgess, David, Drake, James, Marsch, Eckart, Velli, Marco, von Steiger, Rudolf & Zurbuchen, Thomas H., 2013, Multi-scale Physics in Coronal Heating and Solar Wind Acceleration (Editors: Burgess, David, Drake, James, Marsch, Eckart, von Steiger, Rudolf, Velli, Marco & Zurbuchen, Thomas), p.1
0 Planetary magnetospheric physics I. Proceedings. Symposium 6 and Topical Meeting of the COSPAR Interdisciplinary Scientific Commission D (Meetings D2, D4) of the COSPAR 28. Plenary Meeting, The Hague (Netherlands), 25 Jun - 6 Jul 1990.
Grard, R. J. L., Buechner, J., Scholer, M. & Burgess, D., 1991, Advances in Space Research, 11,
0 Pickup ion processes associated with spacecraft thrusters: Implications for solar probe plus
Clemens, Adam & Burgess, David, 2016, Physics of Plasmas, 23, 032901
0 Magnetosphere of Earth: Bow Shock
Burgess, D., 2000, Encyclopedia of Astronomy and Astrophysics (Editors: Murdin, P.), p.2339
0 Cluster at the Bow Shock: Status and Outlook
Scholer, M., Thomsen, M. F., Burgess, D., Bale, S. D., Balikhin, M. A., Balogh, A., Horbury, T. S., Krasnoselskikh, V. V., Kucharek, H., Lucek, E. A., Lembège, B., Möbius, E., Schwartz, S. J. & Walker, S. N., 2005, Outer Magnetospheric Boundaries: Cluster Results (Editors: Paschmann, Goetz, Schwartz, S. J., Escoubet, C. P. & Haaland, S.), p.223
0 QSAS: a Flexible Application for Modern Multi-Point Analysis
Allen, A. J., Barnes, J., Burgess, D., Fraenz, M. & Schwartz, S. J., 2000, Cluster-II Workshop Multiscale / Multipoint Plasma Measurements (Editors: Harris, Robert A.), ESA Special Publication, 449, p. 367
0 Estimating the wavelet bispectrum of multiband whistler mode waves
Shah, M. G. & Burgess, D., 2024, Frontiers in Astronomy and Space Sciences, 11, 1455400


Created on Wed Apr 22 04:31:11 2026.