Positive and negative ionospheric storms occurring during the 15 May 2005 geomagnetic superstorm
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[1] J. Moen,et al. GPS scintillation and irregularities at the front of an ionization tongue in the nightside polar ionosphere , 2014, 1607.00796.
[2] Shweta Sharma,et al. Ionospheric response to the geomagnetic storm of 15 May 2005 over midlatitudes in the day and night sectors simultaneously , 2014 .
[3] Y. Otsuka,et al. Physical mechanisms of the ionospheric storms at equatorial and higher latitudes during the recovery phase of geomagnetic storms , 2013 .
[4] A. Coster,et al. Ionospheric and thermospheric variations associated with prompt penetration electric fields , 2012 .
[5] Wenbin Wang,et al. Thermosphere and ionosphere response to subauroral polarization streams (SAPS): Model simulations , 2012 .
[6] R. Schunk,et al. A modeling study of the longitudinal dependence of storm time midlatitude dayside total electron content enhancements , 2012 .
[7] Shweta Sharma,et al. Longitudinal study of the ionospheric response to the geomagnetic storm of 15 May 2005 and manifestation of TADs , 2011 .
[8] Remko Scharroo,et al. A global positioning system–based climatology for the total electron content in the ionosphere , 2010 .
[9] Keith M. Groves,et al. Specification of the occurrence of equatorial ionospheric scintillations during the main phase of large magnetic storms within solar cycle 23 , 2010 .
[10] C. J. Owen,et al. From the Sun to the Earth: The 13 May 2005 Coronal Mass Ejection , 2010 .
[11] S. Solomon,et al. Ionospheric response to the initial phase of geomagnetic storms: Common features , 2010 .
[12] S. Kawamura,et al. A physical mechanism of positive ionospheric storms at low latitudes and midlatitudes , 2010 .
[13] S. Alex,et al. Large enhancements in low latitude total electron content during 15 May 2005 geomagnetic storm in Indian zone , 2009 .
[14] P. Fagundes,et al. Effects observed in the Latin American sector ionospheric F region during the intense geomagnetic disturbances in the early part of November 2004 , 2009 .
[15] T. Kikuchi,et al. Penetration of magnetospheric electric fields to the equator during a geomagnetic storm , 2008 .
[16] J. Chau,et al. Equatorial Ionospheric Electric Fields During the November 2004 Magnetic Storm , 2007 .
[17] Paul M. Kintner,et al. GPS and ionospheric scintillations , 2007 .
[18] N. Kleimenova,et al. Geomagnetic pulsations and magnetic disturbances during the initial phase of a strong magnetic storm of May 15, 2005 , 2007 .
[19] I. Horvath. Impact of 10 January 1997 geomagnetic storm on the nighttime Weddell Sea Anomaly: A study utilizing data provided by the TOPEX/Poseidon mission and the Defense Meteorological Satellite Program, and simulations generated by the Coupled Thermosphere/Ionosphere Plasmasphere model , 2007 .
[20] Michael Mendillo,et al. Storms in the ionosphere: Patterns and processes for total electron content , 2006 .
[21] G. W. Prölss. Subauroral electron temperature enhancement in the nighttime ionosphere , 2006 .
[22] W. Rideout,et al. Multiradar observations of the polar tongue of ionization , 2005 .
[23] Ljiljana R. Cander,et al. Ionospheric spatial and temporal variations during the 29–31 October 2003 storm , 2005 .
[24] A. Komjathy,et al. Dayside global ionospheric response to the major interplanetary events of October 29–30, 2003 “Halloween Storms” , 2005 .
[25] A. Coster,et al. A quantitative explanation for the phenomenon known as storm‐enhanced density , 2004 .
[26] Toshitaka Tsuda,et al. Global dayside ionospheric uplift and enhancement associated with interplanetary electric fields , 2004 .
[27] Robert R. Meier,et al. Initial observations with the Global Ultraviolet Imager (GUVI) in the NASA TIMED satellite mission , 2003 .
[28] William J. Burke,et al. SAPS: A new categorization for sub‐auroral electric fields , 2002 .
[29] Timothy Fuller-Rowell,et al. Storm-time changes in the upper atmosphere at low latitudes , 2002 .
[30] E. Kudeki,et al. Estimating daytime vertical ExB drift velocities in the equatorial F‐region using ground‐based magnetometer observations , 2002 .
[31] R. Roble,et al. Coexistence of ionospheric positive and negative storm phases under northern winter conditions: A case study , 2001 .
[32] C. Devasia,et al. Ionospheric storm of early November 1993 in the Indian equatorial region , 2000 .
[33] M. A. Abdu,et al. Major phenomena of the equatorial ionosphere-thermosphere system under disturbed conditions , 1997 .
[34] R. Schunk,et al. Ionosphere-thermosphere space weather issues , 1996 .
[35] H. Hayakawa,et al. Cross polar cap diameter and voltage as a function of PC index and interplanetary quantities , 1996 .
[36] G. J. Bailey,et al. Equatorial plasma fountain and its effects-possibility of an additional layer , 1995 .
[37] S. Quegan,et al. Effects of an atmospheric gravity wave on the midlatitude ionospheric F layer , 1993 .
[38] J. Foster. Storm time plasma transport at middle and high latitudes , 1993 .
[39] R. Dickinson,et al. Global circulation and temperature structure of thermosphere with high‐latitude plasma convection , 1982 .
[40] Arthur D. Richmond,et al. The ionospheric disturbance dynamo , 1980 .
[41] G. W. Prölss,et al. Travelling atmospheric disturbances as a possible explanation for daytime positive storm effects of moderate duration at middle latitudes , 1978 .
[42] K. Maekawa,et al. Transmission of polar electric fields to the Equator , 1978, Nature.
[43] G. J. Bailey,et al. A Physical Mechanism of Positive Ionospheric Storms , 2011 .
[44] B. Lovell,et al. Distinctive plasma density features of the topside ionosphere and their electrodynamics investigated during southern winter , 2009 .
[45] G. J. Bailey,et al. Response of the ionosphere to super geomagnetic storms: Observations and modeling , 2008 .
[46] J. Borovsky,et al. A linkage between polar patches and plasmaspheric drainage plumes , 2001 .
[47] Walter S. Monroe,et al. The physical mechanism. , 1930 .