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BepiColombo cruise science: overview of the mission contribution to heliophysics

Sánchez-Cano, Beatriz; Hadid, Lina Z.; Aizawa, Sae; Murakami, Go; Bamba, Yumi; Chiba, Shota; Hara, Takuya; Heyner, Daniel; Ho, George; Iwai, Kazumasa; Kilpua, Emilia; Kinoshita, Gaku; Lavraud, Benoit; Miyoshi, Yoshizumi; Pinto, Marco; Schmid, Daniel; Shiota, Daikou; Vainio, Rami; Andre, Nicolas; Aronica, Alessandro; Asmar, Sami; Auster, Hans-Ulrich; Barabash, Stas; Barthe, Alain; Baumjohann, Wolfgang; Benkhoff, Johannes; Bentley, Mark; Bunce, Emma; Cappuccio, Paolo; Delcourt, Dominique; Di, Stefano Ivan; Doria, Irene; Dresing, Nina; Fedorov, Andrei; Fischer, David; Fiethe, Bjorn; Fränz, Markus; Gieseler, Jan; Giner, Franz; Giono, Gabriel; Harada, Yuki; Hussmann, Hauke; Iess, Luciano; Imamura, Takeshi; Jeszenszky, Harald; Jones, Geraint; Katra, Bruno; Kazakov, Adrian; Kozyrev, Alexander; Laky, Gunter; Lefevre, Carlo; Lichtenegger, Herbert; Lindsay, Simon; Lucente, Marco; Magnafico, Carmelo; Magnes, Werner; Martindale, Adrian; Matsuoka, Ayako; Milillo, Anna; Mitrofanov, Igor; Nishiyama, Gaku; Oleynik, Philipp; Orsini, Stefano; Paik, Meegyeong; Palmroos, Christian; Plainaki, Christina; Penou, Emanuel; Persson, Moa; Quarati, Francesco; Quémerais, Eric; Richter, Ingo; Robidel, Rozenn; Rojo, Mathias; Saito, Yoshifumi; Santoli, Francesco; Stark, Alexander; Stumpo, Mirko; Tian, Rong; Varsani, Ali; Verdeil, Christopher; Williamson, Hayley; Witasse, Olivier; Yokota, Shoichiro

BepiColombo cruise science: overview of the mission contribution to heliophysics

Sánchez-Cano, Beatriz
Hadid, Lina Z.
Aizawa, Sae
Murakami, Go
Bamba, Yumi
Chiba, Shota
Hara, Takuya
Heyner, Daniel
Ho, George
Iwai, Kazumasa
Kilpua, Emilia
Kinoshita, Gaku
Lavraud, Benoit
Miyoshi, Yoshizumi
Pinto, Marco
Schmid, Daniel
Shiota, Daikou
Vainio, Rami
Andre, Nicolas
Aronica, Alessandro
Asmar, Sami
Auster, Hans-Ulrich
Barabash, Stas
Barthe, Alain
Baumjohann, Wolfgang
Benkhoff, Johannes
Bentley, Mark
Bunce, Emma
Cappuccio, Paolo
Delcourt, Dominique
Di, Stefano Ivan
Doria, Irene
Dresing, Nina
Fedorov, Andrei
Fischer, David
Fiethe, Bjorn
Fränz, Markus
Gieseler, Jan
Giner, Franz
Giono, Gabriel
Harada, Yuki
Hussmann, Hauke
Iess, Luciano
Imamura, Takeshi
Jeszenszky, Harald
Jones, Geraint
Katra, Bruno
Kazakov, Adrian
Kozyrev, Alexander
Laky, Gunter
Lefevre, Carlo
Lichtenegger, Herbert
Lindsay, Simon
Lucente, Marco
Magnafico, Carmelo
Magnes, Werner
Martindale, Adrian
Matsuoka, Ayako
Milillo, Anna
Mitrofanov, Igor
Nishiyama, Gaku
Oleynik, Philipp
Orsini, Stefano
Paik, Meegyeong
Palmroos, Christian
Plainaki, Christina
Penou, Emanuel
Persson, Moa
Quarati, Francesco
Quémerais, Eric
Richter, Ingo
Robidel, Rozenn
Rojo, Mathias
Saito, Yoshifumi
Santoli, Francesco
Stark, Alexander
Stumpo, Mirko
Tian, Rong
Varsani, Ali
Verdeil, Christopher
Williamson, Hayley
Witasse, Olivier
Yokota, Shoichiro
Katso/Avaa
s40623-025-02256-z.pdf (4.420Mb)
Lataukset: 

Springer Nature
doi:10.1186/s40623-025-02256-z
URI
https://doi.org/10.1186/s40623-025-02256-z
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe202601216771
Tiivistelmä

BepiColombo, the joint ESA/JAXA mission to Mercury, was launched in October 2018 and is scheduled to arrive at Mercury in November 2026 after an 8-year cruise. Like other planetary missions, its scientific objectives focus mostly on the nominal, orbiting phase of the mission. However, due to the long duration of the cruise phase covering distances between 1.2 and 0.3 AU, the BepiColombo mission has been able to outstandingly contribute to characterise the solar wind and transient events encountered by the spacecraft, as well as planetary environments during the flybys of Earth, Venus, and Mercury, and contribute to the characterisation of the space radiation environment in the inner Solar System and its evolution with solar activity. In this paper, we provide an overview of the cruise observations of BepiColombo, highlighting the most relevant science cases, with the aim of demonstrating the importance of planetary missions to perform cruise observations, to contribute to a broader understanding of Space Weather in the Solar System, and in turn, increase the scientific return of the mission.

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