Observations of the 2023 February 27 fireball in northern Sweden using the auroral imaging system ALIS_4D

Fuente: arXiv
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Main Authors: Borderes-Motta, Gabriel, Kastinen, Daniel, Sergienko, Tima, Brändström, Urban, Kero, Johan, Visuri, Jaakko, Gritsevich, Maria, Moilanen, Jarmo, Mourão, Daniela Cardozo, Camargo, Barbara Celi Braga
Format: Preprint
Published: 2026
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author Borderes-Motta, Gabriel
Kastinen, Daniel
Sergienko, Tima
Brändström, Urban
Kero, Johan
Visuri, Jaakko
Gritsevich, Maria
Moilanen, Jarmo
Mourão, Daniela Cardozo
Camargo, Barbara Celi Braga
author_facet Borderes-Motta, Gabriel
Kastinen, Daniel
Sergienko, Tima
Brändström, Urban
Kero, Johan
Visuri, Jaakko
Gritsevich, Maria
Moilanen, Jarmo
Mourão, Daniela Cardozo
Camargo, Barbara Celi Braga
contents On 2023 February 27 at 18:15:55.77 UT, a bright fireball streaked across the sky above northern Sweden. The event offered a valuable opportunity to study the phenomenon using an optical system primarily designed for auroral studies, the Auroral Large Imaging System (ALIS_4D), that captured the event. In this study we show the capability of ALIS_4D to perform observations in support of meteor event analysis. We estimated the trajectory from the recorded data and computed the orbit. In addition, we investigated the origin of the meteoroid searching for its parent body. Fitting the analytical ablation model known as $α$-$β$ to the trajectory as well as incorporating local wind-field data in Monte-Carlo dark-flight simulations, strewn-fields were computed and physical properties of the meteoroid were estimated. Trajectory analyses delineate a strewn field along the border between Kiruna and Gällivare in northern Sweden. Our findings indicate that the meteoroid's parent body was likely an Apollo family object. We performed an orbital similarity analysis to identify candidate parent bodies of the fireball. Our simulations suggest that close approaches with Earth could have disrupted the meteoroid's orbit, placing it on a collision course.
format Preprint
id arxiv_https___arxiv_org_abs_2605_08834
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Observations of the 2023 February 27 fireball in northern Sweden using the auroral imaging system ALIS_4D
Borderes-Motta, Gabriel
Kastinen, Daniel
Sergienko, Tima
Brändström, Urban
Kero, Johan
Visuri, Jaakko
Gritsevich, Maria
Moilanen, Jarmo
Mourão, Daniela Cardozo
Camargo, Barbara Celi Braga
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
On 2023 February 27 at 18:15:55.77 UT, a bright fireball streaked across the sky above northern Sweden. The event offered a valuable opportunity to study the phenomenon using an optical system primarily designed for auroral studies, the Auroral Large Imaging System (ALIS_4D), that captured the event. In this study we show the capability of ALIS_4D to perform observations in support of meteor event analysis. We estimated the trajectory from the recorded data and computed the orbit. In addition, we investigated the origin of the meteoroid searching for its parent body. Fitting the analytical ablation model known as $α$-$β$ to the trajectory as well as incorporating local wind-field data in Monte-Carlo dark-flight simulations, strewn-fields were computed and physical properties of the meteoroid were estimated. Trajectory analyses delineate a strewn field along the border between Kiruna and Gällivare in northern Sweden. Our findings indicate that the meteoroid's parent body was likely an Apollo family object. We performed an orbital similarity analysis to identify candidate parent bodies of the fireball. Our simulations suggest that close approaches with Earth could have disrupted the meteoroid's orbit, placing it on a collision course.
title Observations of the 2023 February 27 fireball in northern Sweden using the auroral imaging system ALIS_4D
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2605.08834