date: 2022-10-25T09:05:14Z pdf:PDFVersion: 1.7 pdf:docinfo:title: Analysis of the Sporadic-E Layer Behavior in Different American Stations during the Days around the September 2017 Geomagnetic Storm xmp:CreatorTool: LaTeX with hyperref Keywords: sporadic-E (Es) layer; tidal winds; geomagnetic storm access_permission:modify_annotations: true access_permission:can_print_degraded: true subject: The development of sporadic-E (Es) layers over five Digisonde stations in the American sector is analyzed. This work aims to investigate the dynamic of such layers during the days around the geomagnetic storm that occurred on 8 September 2017. Therefore, a numerical model (MIRE) and Radio Occultation (RO) technique are used to analyze the E layer dynamics. The results show a downward movement in low-middle latitudes due to the wind components that had no significant changes before, during, and after the geomagnetic storm. In fact, our data and simulations showed weak Es layers over Boulder, Cachoeira Paulista, and Santa Maria, even though the winds were not low. However, the RO data show the terdiurnal and quarterdiurnal influence in the Es layer formation, which can explain this behavior. In addition, we observed an atypical Es layer type, slant Es layer (Ess), during the main phase of the magnetic storm over Boulder. The possible cause of the Ess layers was gravity waves. Another interesting point is the spreading Es layer occurrence associated with the Kelvin?Helmholtz Instability (KHI). Finally, it is confirmed that the disturbed electric field only influenced the Es layer dynamics in regions near the magnetic equator. dc:creator: Laysa C. A. Resende, Yajun Zhu, Christina Arras, Clezio M. Denardini, Sony S. Chen, Juliano Moro, Diego Barros, Ronan A. J. Chagas, Lígia A. Da Silva, Vânia F. Andrioli, José P. Marchezi, Alexander J. Carrasco, Chi Wang, Hui Li and Zhengkuan Liu dcterms:created: 2022-10-25T08:57:46Z Last-Modified: 2022-10-25T09:05:14Z dcterms:modified: 2022-10-25T09:05:14Z dc:format: application/pdf; version=1.7 title: Analysis of the Sporadic-E Layer Behavior in Different American Stations during the Days around the September 2017 Geomagnetic Storm Last-Save-Date: 2022-10-25T09:05:14Z pdf:docinfo:creator_tool: LaTeX with hyperref access_permission:fill_in_form: true pdf:docinfo:keywords: sporadic-E (Es) layer; tidal winds; geomagnetic storm pdf:docinfo:modified: 2022-10-25T09:05:14Z meta:save-date: 2022-10-25T09:05:14Z pdf:encrypted: false dc:title: Analysis of the Sporadic-E Layer Behavior in Different American Stations during the Days around the September 2017 Geomagnetic Storm modified: 2022-10-25T09:05:14Z cp:subject: The development of sporadic-E (Es) layers over five Digisonde stations in the American sector is analyzed. This work aims to investigate the dynamic of such layers during the days around the geomagnetic storm that occurred on 8 September 2017. Therefore, a numerical model (MIRE) and Radio Occultation (RO) technique are used to analyze the E layer dynamics. The results show a downward movement in low-middle latitudes due to the wind components that had no significant changes before, during, and after the geomagnetic storm. In fact, our data and simulations showed weak Es layers over Boulder, Cachoeira Paulista, and Santa Maria, even though the winds were not low. However, the RO data show the terdiurnal and quarterdiurnal influence in the Es layer formation, which can explain this behavior. In addition, we observed an atypical Es layer type, slant Es layer (Ess), during the main phase of the magnetic storm over Boulder. The possible cause of the Ess layers was gravity waves. Another interesting point is the spreading Es layer occurrence associated with the Kelvin?Helmholtz Instability (KHI). Finally, it is confirmed that the disturbed electric field only influenced the Es layer dynamics in regions near the magnetic equator. pdf:docinfo:subject: The development of sporadic-E (Es) layers over five Digisonde stations in the American sector is analyzed. This work aims to investigate the dynamic of such layers during the days around the geomagnetic storm that occurred on 8 September 2017. Therefore, a numerical model (MIRE) and Radio Occultation (RO) technique are used to analyze the E layer dynamics. The results show a downward movement in low-middle latitudes due to the wind components that had no significant changes before, during, and after the geomagnetic storm. In fact, our data and simulations showed weak Es layers over Boulder, Cachoeira Paulista, and Santa Maria, even though the winds were not low. However, the RO data show the terdiurnal and quarterdiurnal influence in the Es layer formation, which can explain this behavior. In addition, we observed an atypical Es layer type, slant Es layer (Ess), during the main phase of the magnetic storm over Boulder. The possible cause of the Ess layers was gravity waves. Another interesting point is the spreading Es layer occurrence associated with the Kelvin?Helmholtz Instability (KHI). Finally, it is confirmed that the disturbed electric field only influenced the Es layer dynamics in regions near the magnetic equator. Content-Type: application/pdf pdf:docinfo:creator: Laysa C. A. Resende, Yajun Zhu, Christina Arras, Clezio M. Denardini, Sony S. Chen, Juliano Moro, Diego Barros, Ronan A. J. Chagas, Lígia A. Da Silva, Vânia F. Andrioli, José P. Marchezi, Alexander J. Carrasco, Chi Wang, Hui Li and Zhengkuan Liu X-Parsed-By: org.apache.tika.parser.DefaultParser creator: Laysa C. A. Resende, Yajun Zhu, Christina Arras, Clezio M. Denardini, Sony S. Chen, Juliano Moro, Diego Barros, Ronan A. J. Chagas, Lígia A. Da Silva, Vânia F. Andrioli, José P. Marchezi, Alexander J. Carrasco, Chi Wang, Hui Li and Zhengkuan Liu meta:author: Laysa C. A. Resende, Yajun Zhu, Christina Arras, Clezio M. Denardini, Sony S. Chen, Juliano Moro, Diego Barros, Ronan A. J. Chagas, Lígia A. Da Silva, Vânia F. Andrioli, José P. Marchezi, Alexander J. Carrasco, Chi Wang, Hui Li and Zhengkuan Liu dc:subject: sporadic-E (Es) layer; tidal winds; geomagnetic storm meta:creation-date: 2022-10-25T08:57:46Z created: Tue Oct 25 10:57:46 CEST 2022 access_permission:extract_for_accessibility: true access_permission:assemble_document: true xmpTPg:NPages: 16 Creation-Date: 2022-10-25T08:57:46Z access_permission:extract_content: true access_permission:can_print: true meta:keyword: sporadic-E (Es) layer; tidal winds; geomagnetic storm Author: Laysa C. A. Resende, Yajun Zhu, Christina Arras, Clezio M. Denardini, Sony S. Chen, Juliano Moro, Diego Barros, Ronan A. J. Chagas, Lígia A. Da Silva, Vânia F. Andrioli, José P. Marchezi, Alexander J. Carrasco, Chi Wang, Hui Li and Zhengkuan Liu producer: pdfTeX-1.40.21 access_permission:can_modify: true pdf:docinfo:producer: pdfTeX-1.40.21 pdf:docinfo:created: 2022-10-25T08:57:46Z