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Pregled bibliografske jedinice broj: 1250157

Probing CME evolution using galactic cosmic ray measurements


Dumbovic, M., Kirin, A., Kramaric, L., Heber, B., Hörlöck, M., Benko, I., Martinic, K., Vrsnak, B.
Probing CME evolution using galactic cosmic ray measurements // AGU Fall Meeting 2022
Chicago (IL), Sjedinjene Američke Države, 2022. str. 1-1 (predavanje, međunarodna recenzija, sažetak, znanstveni)


CROSBI ID: 1250157 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Probing CME evolution using galactic cosmic ray measurements

Autori
Dumbovic, M., Kirin, A., Kramaric, L., Heber, B., Hörlöck, M., Benko, I., Martinic, K., Vrsnak, B.

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni

Skup
AGU Fall Meeting 2022

Mjesto i datum
Chicago (IL), Sjedinjene Američke Države, 12.12.2022. - 16.12.2022

Vrsta sudjelovanja
Predavanje

Vrsta recenzije
Međunarodna recenzija

Ključne riječi
Sun, Heliosphere, coronal mass ejection, forbush decreases, galactic cosmic rays

Sažetak
One of the most common in situ signatures of CMEs are short-term reductions in Galactic cosmic ray (GCR) flux (i.e., Forbush decreases) measured by ground-based instruments on Earth and Mars, and by various spacecraft in the heliosphere (most recently by Solar Orbiter). We have recently developed an analytical model to explain CME-related Forbush decreases using an expansion-diffusion approach (ForbMod, Dumbovic et al., 2018 ; 2020). According to the model, the amplitude of the depression at a given point in the heliosphere depends on the initial CME properties as well as its evolutionary properties. By constraining the initial CME properties using remote observations and the final state properties using insitu measurements, we can apply reverse modelling to gain insight into CME evolution. We test the applicability by comparing model and observations using SOHO/LASCO and STEREO/SECCHI remote observations of the Sun, near-Earth in situ plasma and magnetic field measurements from OMNI, and GCR measurements from SOHO/EPHIN.

Izvorni jezik
Engleski

Znanstvena područja
Fizika



POVEZANOST RADA


Projekti:
HRZZ-IP-2020-02-9893 - Interakcija koroninih šupljina i sunčevih oluja (ICOHOSS) (Dumbović, Mateja, HRZZ - 2020-02) ( CroRIS)

Ustanove:
Geodetski fakultet, Zagreb

Poveznice na cjeloviti tekst rada:

agu.confex.com

Citiraj ovu publikaciju:

Dumbovic, M., Kirin, A., Kramaric, L., Heber, B., Hörlöck, M., Benko, I., Martinic, K., Vrsnak, B.
Probing CME evolution using galactic cosmic ray measurements // AGU Fall Meeting 2022
Chicago (IL), Sjedinjene Američke Države, 2022. str. 1-1 (predavanje, međunarodna recenzija, sažetak, znanstveni)
Dumbovic, M., Kirin, A., Kramaric, L., Heber, B., Hörlöck, M., Benko, I., Martinic, K., Vrsnak, B. (2022) Probing CME evolution using galactic cosmic ray measurements. U: AGU Fall Meeting 2022.
@article{article, year = {2022}, pages = {1-1}, keywords = {Sun, Heliosphere, coronal mass ejection, forbush decreases, galactic cosmic rays}, title = {Probing CME evolution using galactic cosmic ray measurements}, keyword = {Sun, Heliosphere, coronal mass ejection, forbush decreases, galactic cosmic rays}, publisherplace = {Chicago (IL), Sjedinjene Ameri\v{c}ke Dr\v{z}ave} }
@article{article, year = {2022}, pages = {1-1}, keywords = {Sun, Heliosphere, coronal mass ejection, forbush decreases, galactic cosmic rays}, title = {Probing CME evolution using galactic cosmic ray measurements}, keyword = {Sun, Heliosphere, coronal mass ejection, forbush decreases, galactic cosmic rays}, publisherplace = {Chicago (IL), Sjedinjene Ameri\v{c}ke Dr\v{z}ave} }




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