Sources
Some of the events in the TUMS database have been originally listed in the following publications:
- Bergman, S., Karlsson, T., Wong Chan, T. K., & Trollvik, H. (2025), Statistical properties of short large-amplitude magnetic structures (SLAMS) in the foreshock of earth from cluster measurements. Journal of Geophysical Research: Space Physics , 130, e2024JA033568, doi:10.1029/2024JA033568
- Wang, B., Liu, J., Han, D., Wang, Y., & Feng, X. (2024), Statistical study of hot flow anomaly-induced ground magnetic ultra-low frequency oscillations, Journal of Geophysical Research: Space Physics,, doi:10.1029/2024JA032667
- Wang, S., Li, J.-H., Li, L., Zhou, X.-Z., Omura, Y., Zhao, J.-T., et al. (2024) A statistical examination of interactions between 1-Hz whistler waves and ions in the Earth's foreshock, Journal of Geophysical Research: Space Physics, doi:10.1029/2024JA032960
- Kajdič, P., Blanco-Cano, X., Omidi, N., Meziane, K., Russell, C. T., Sauvaud, J.-A., Dandouras, I., and Lavraud, B.: Statistical study of foreshock cavitons (2013), Statistical study of foreshock cavitons, Annales Geophysicae, doi:10.5194/angeo-31-2163-2013
- Karlsson, T., Plaschke, F., Glass, A. N., and Raines, J. M.: Short large-amplitude magnetic structures (SLAMS) at Mercury observed by MESSENGER (2024), Short large-amplitude magnetic structures (SLAMS) at Mercury observed by MESSENGER, Annales Geophysicae, doi:10.5194/angeo-42-117-2024
- Collinson, G. A., Sibeck, D. G., Masters, A., Shane, N., Slavin, J. A., Coates, A. J., Zhang, T. L., Sarantos, M., Boardsen, S., Moore, T. E., Barabash, S. (2012), Hot flow anomalies at Venus, Journal of Geophysical Research: Space Physics, doi:10.1029/2011JA017277
- Collinson, G. A., D. G. Sibeck, A. Masters et al. (2014), A survey of hot flow anomalies at Venus, Journal of Geophysical Research: Space Physics, doi:10.1002/2013JA018863
- Collinson, G., J. Halekas, J. Grebowsky, J. Connerney, D. Mitchell, J. Espley, G. DiBraccio, C. Mazelle, J.-A. Sauvaud, A. Fedorov, et al. (2015), A hot flow anomaly at Mars, Geophysical Research Letters, doi:10.1002/2015GL065079
- Collinson, Glyn, Sibeck, David, Omidi, Nick, Grebowsky, Joseph, Halekas, Jasper, Mitchell, David, Espley, Jared, Zhang, Tielong, Persson, Moa, Futaana, Yoshifumi, Jakosky, Bruce (2017) Spontaneous hot flow anomalies at Mars and Venus, Journal of Geophysical Research: Space Physics, doi:10.1002/2017JA024196
- Collinson, G., Sibeck, D., Omidi, N., Frahm, R., Zhang, T., & Mitchell, D., et al. (2020) Foreshock cavities at Venus and Mars, Journal of Geophysical Research: Space Physics, doi:10.1029/2020JA028023
- Collinson, G. A., Hietala, H., Plaschke, F., Karlsson, T., Wilson, L. B., III, Archer, M., et al. (2023), Shocklets and Short Large Amplitude Magnetic Structures (SLAMS) in the High Mach Foreshock of Venus , Geophysical Research Letters, doi:10.1029/2023GL104610
- Lu, X., Zhang, H., Liu, T., Vu, A., Pollock, C., & Wang, B. (2022), Statistical study of foreshock density holes, Journal of Geophysical Research: Space Physics, doi:10.1029/2021JA029981
- Savvas Raptis, Martin Lindberg, Terry Z. Liu, Drew L. Turner, Ahmad Lalti, Yufei Zhou, Primož Kajdič, Athanasios Kouloumvakos, David G. Sibeck, Laura Vuorinen, Adam Michael, Mykhaylo Shumko, Adnane Osmane, Eva Krämer, Lucile Turc, Tomas Karlsson, Christos Katsavrias, Lynn B. Wilson III, Hadi Madanian, Xóchitl Blanco-Cano, Ian J. Cohen, and C. Philippe Escoubet, (2025), Multimission Observations of Relativistic Electrons and High-speed Jets Linked to Shock-generated Transients, The Astrophysical Journal Letters, doi:10.3847/2041-8213/adb154
- D. Shuvalov, V.N. Ermakov, V.O. Zorina, K.I. Kim (2019), Propagation properties of Hot Flow Anomalies at Mars: MAVEN observations, Planetary and Space Science, doi:10.1016/j.pss.2019.104717
- Bruce T. Tsurutani, John K. Arballo, Edward J. Smith, David Southwood, Andre Balogh (1993), Large-amplitude magnetic pulses downstream of the Jovian bow shock: Ulysses observations, Planetary and Space Science, doi:10.1016/0032-0633(93)90092-G
- P. W. Valek, M. F. Thomsen, F. Allegrini, F. Bagenal, S. Bolton, J. Connerney, R. W. Ebert, R. Gladstone, W. S. Kurth, S. Levin, P. Louarn, B. Mauk, D. J. McComas, C. Pollock, M. Reno, J. R. Szalay, S. Weidner, R. J. Wilson, Masters, A., et al. (2009), Hot flow anomaly observed at Jupiter's bow shock, Geophysical Research Letters, doi:10.1029/2009GL037128
- Masters, A., et al. (2009), Hot flow anomalies at Saturn's bow shock, Journal of Geophysical Research: Space Physics, doi:10.1029/2009JA014112
- Wu, M. Y., Wang, H. Y., Wang, L., Wang, G. Q., Xiao, S. D., Chen, Y. J., Lü, Q., E, P., Du, A. M., and Zhang, T. L. (2025),Statistical properties of hot flow anomalies around Mars, Earth Planet. Phys., doi:10.26464/epp2025021
- Uritsky, V. M., J. A. Slavin, S. A. Boardsen, T. Sundberg, J. M. Raines, D. J. Gershman, G. Collinson, D. Sibeck, G. V. Khazanov, B. J. Anderson, and H. Korth (2014),Active current sheets and candidate hot flow anomalies upstream of Mercury's bow shock, Journal of Geophysical Research: Space Physics, doi:10.1002/2013JA019052
- Oieroset M., Mitchell D.~L., Phan T. D., Lin R. P., Acuña M. H., (2001), Hot diamagnetic cavities upstream of the Martian bow shock , Geophysical Research Letters, doi:10.1029/2000GL012289