Energy coupling between the solar wind and the magnetosphere, Space Sci. Rev, vol.28, pp.121-190, 1981. ,
Magnetospheric inpulse response for many levels of geomagnetic activity, J. Geophys. Res, vol.90, pp.6387-6394, 1985. ,
, Magnetospheric Contributions to the Terrestrial Magnetic Field, Space Research Institute, pp.77-91, 2007.
Large-amplitude Alfvén waves in the interplanetary medium, J. Geophys. Res, vol.2, pp.3534-3563, 1971. ,
Multifractal analysis of interplanetary magnetic field obtained during CME events, Ann. Geophys, vol.30, pp.1107-1112, 2012. ,
The Earth's magnetosphere: a brief beginner's guide, EOS T. Am. Geophys. Un, vol.76, pp.525-532, 1995. ,
Statistics and Data Analysis in Geology, 1986. ,
Interplanetary magnetic field and auroral zones, Phys. Rev. Lett, vol.6, pp.47-48, 1961. ,
What is a geomagnetic storm?, J. Geophys. Res, vol.99, pp.5771-5792, 1994. ,
Application of the cross wavelet transform and wavelet coherence to geophysical time series, GSFC: IMF B z data, vol.11, p.1, 2004. ,
URL : https://hal.archives-ouvertes.fr/hal-00302394
A study of the interplanetary and solar origin of high intensity long duration and continuous auroral activity events, Inst. Nac. Pesqui. Espaciais, 2005. ,
, The nature of auroras during high-intensity longduration continuous AE activity (HILDCAA) events, p.167, 1998.
Solar cycle dependence of High-Intensity Long-Duration Continuous AE Activity (HILDCAA) events, relativistic electron predictors?, J. Geophys. Res.-Space, vol.118, pp.5626-5638, 2013. ,
Solar wind-magnetosphere energy coupling efficiency and partitioning: HILDCAAs and preceding CIR storms during solar cycle 23, J. Geophs. Res, vol.119, pp.2675-2690, 2014. ,
Relativistic electron acceleration during high-intensity, long-duration, continuous AE activity (HILDCAA) events: solar cycle phase dependences, Geophys. Res. Lett, vol.41, pp.1876-1881, 2014. ,
Superposed epoch analyses of HILDCAAs and their interplanetary drivers: solar cycle and seasonal dependences, J. Atmos. Sol.Terr. Phy, vol.121, pp.24-31, 2014. ,
Relativistic electron acceleration during HILDCAA events: are CIR magnetic storms important?, Earth Planets Space, vol.61, pp.1-11, 2015. ,
Relativistic (E > 0.6, > 2.0, and > 4.0 MeV) electron acceleration at geosynchronous orbit during high-intensity, long-duration, continuous ae activity (HILDCAA) events, Astrophys, J, vol.799 ,
Highspeed solar wind stream effects on the topside ionosphere over Arecibo: a case study during solar minimum, Geophys. Res. Lett, vol.44, pp.7607-7617, 2017. ,
URL : https://hal.archives-ouvertes.fr/insu-01670692
On the local time dependence of the penetration of solar wind-induced electric fields to the magnetic equator, Ann. Geophys, vol.27, pp.3027-3030, 2009. ,
Electrodynamic coupling process between the magnetosphere and the equatorial ionosphere during a 5-day HILDCAA event, J. Atmos. Sol.-Terr. Phy, vol.73, pp.148-155, 2011. ,
Characterization of high-intensity, long-duration continuous auroral activity (HILDCAA) events using recurrence quantification analysis, Nonlin. Processes Geophys, vol.24, pp.407-417, 2017. ,
URL : https://hal.archives-ouvertes.fr/insu-01577422
Geophysical coordinate transformations, Cosmic Electrodynamics, vol.2, pp.184-196, 1971. ,
Equatorial ionospheric responses to high-intensity long-duration auroral electrojet activity (HILDCAA), J. Geophys. Res, vol.111, 2006. ,
Evidence for particle injection as the cause of Dst reduction during HILDCAA events, J. Atmos. Sol.-Terr. Phy, vol.66, pp.177-186, 2004. ,
A study on the main periodicities in interplanetary magnetic field B z component and geomagnetic AE index during HILDCAA events using wavelet analysis, J. Atmos. Sol.-Terr. Phy, vol.149, pp.81-86, 2016. ,
Coronal holes, solar wind streams, and recurrent geomagnetic disturbances: 1973-1076, Sol. Phys, vol.49, pp.271-278, 1976. ,
Evidence of prompt penetration electric fields during HILDCAA events, Ann. Geophys, vol.35, pp.1165-1176, 2017. ,
Ulysses observations of Alfvén waves in the southern and northern solar hemispheres, B. Am. Meteorol. Soc, vol.22, pp.61-78, 1995. ,
The cause of High-Intensity Long-Duration Continuous AE Activity (HILDCAAS) interplanetary alfven-wave trains, Planet. Space Sci, vol.35, pp.405-412, 1987. ,
The interplanetary and solar causes of geomagnetic activity, Planet. Space Sci, vol.38, pp.109-126, 1990. ,
Interplanetary origin of geomagnetic activity in the declining phase of the solar cycle, J. Geophys. Res, vol.100, pp.21717-21733, 1995. ,
Heliospheric plasma sheet (HPS) impingement onto the magnetosphere as a cause of relativistic electron dropouts (REDs) via coherent EMIC wave scattering with possible consequences for climate change mechanisms, J. Geophys. Res, vol.121, pp.10130-10156, 2016. ,
Unusually long lasting multiple penetration of interplanetary electric field to equatorial ionospheric under oscillating IMF B z, J. Geophys. Res, vol.35, p.2102, 2008. ,