Searching for Carrington-like events and their signatures and triggers

The Carrington storm in 1859 is considered to be the major geomagnetic disturbance related to solar activity. In a recent paper, Cid et al. (2015) discovered a geomagnetic disturbance case with a profile extraordinarily similar to the disturbance of the Carrington event at Colaba, but at a mid-latit...

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Detalles Bibliográficos
Autores: Saiz Villanueva, María Elena|||0000-0001-7878-9476, Guerrero Ortega, Antonio|||0000-0002-7056-7753, Cid Tortuero, Consuelo|||0000-0002-2863-3745, Palacios Hernández, Judith|||0000-0002-1518-512X, Cerrato Montalbán, Yolanda|||0000-0002-0170-4777
Tipo de recurso: artículo
Fecha de publicación:2016
País:España
Institución:Universidad de Alcalá (UAH)
Repositorio:e_Buah Biblioteca Digital Universidad de Alcalá
Idioma:inglés
OAI Identifier:oai:ebuah.uah.es:10017/54483
Acceso en línea:http://hdl.handle.net/10017/54483
https://dx.doi.org/10.1051/swsc/2016001
Access Level:acceso abierto
Palabra clave:Interplanetary medium
Geomagnetism
Space weather
Storm
Indices
Física
Astronomía
Physics
Astronomy
Descripción
Sumario:The Carrington storm in 1859 is considered to be the major geomagnetic disturbance related to solar activity. In a recent paper, Cid et al. (2015) discovered a geomagnetic disturbance case with a profile extraordinarily similar to the disturbance of the Carrington event at Colaba, but at a mid-latitude observatory, leading to a reinterpretation of the 1859 event. Based on those results, this paper performs a deep search for other ?Carrington-like? events and analyses interplanetary observations leading to the ground disturbances which emerged from the systematic analysis. The results of this study based on two Carrington-like events (1) reinforce the awareness about the possibility of missing hazardous space weather events as the large H-spike recorded at Colaba by using global geomagnetic indices, (2) argue against the role of the ring current as the major current involved in Carrington-like events, leaving field-aligned currents (FACs) as the main current involved and (3) propose abrupt southward reversals of IMF along with high solar wind pressure as the interplanetary trigger of a Carrington-like event.