2024
Simulation of the isotropic ultra-high energy photons flux in the solar magnetic field and a comparison with observations made by the HAWC and Fermi-LAT observatories
ALVAREZ CASTILLO, David E., Piotr HOMOLA, Bożena PONCYLJUSZ, Dariusz GORA, Dhital NIRAJ et. al.Základní údaje
Originální název
Simulation of the isotropic ultra-high energy photons flux in the solar magnetic field and a comparison with observations made by the HAWC and Fermi-LAT observatories
Autoři
ALVAREZ CASTILLO, David E., Piotr HOMOLA, Bożena PONCYLJUSZ, Dariusz GORA, Dhital NIRAJ, Oleksandr SUSHCHOV, Jarosław STASIELAK, Sławomir STUGLIK, Vahab NAZARI, Cristina OANCEA, Dmitriy BEZNOSKO, Noemi ZABARI, Alok C. GUPTA, Bohdan HNATYK, Alona MOZGOVA, Marcin KASZTELAN, Marcin BIELEWICZ, Peter KOVACS, Bartosz ŁOZOWSKI, Mikhail V. MEDVEDEV, Justyna MISZCZYK, Łukasz BIBRZYCKI, Michał NIEDŹWIECKI, Katarzyna SMELCERZ, Tomasz HACHAJ, Marcin PIEKARCZYK, Maciej PAWLIK, Krzysztof RZECKI, Matías ROSAS, Karel SMOLEK, Manana SVANIDZE, Revaz BERADZE, Arman TURSUNOV (860 Uzbekistán, domácí), Tadeusz WIBIG, Jilberto ZAMORA-SAA, Justyna MĘDRALA, Gabriela OPIŁA, Jerzy PRYGA, Ophir RUIMI a Mario Rodriguez CAHUANTZI
Vydání
Trieste, Italy, Proceedings of Science, od s. "446-1"-"446-8", 8 s. 2024
Nakladatel
Sissa Medialab Srl
Další údaje
Jazyk
angličtina
Typ výsledku
Stať ve sborníku
Obor
10308 Astronomy
Stát vydavatele
Itálie
Utajení
není předmětem státního či obchodního tajemství
Forma vydání
elektronická verze "online"
Odkazy
Organizační jednotka
Fyzikální ústav v Opavě
ISSN
Klíčová slova anglicky
Earth atmosphere; Fermions; Particle beams; Photons; Secondary emission; Tropics;Cosmic rays
Štítky
Příznaky
Mezinárodní význam, Recenzováno
Změněno: 5. 3. 2025 14:33, Mgr. Pavlína Jalůvková
Anotace
V originále
In this contribution we study the possibility of the formation of cosmic ray ensembles (CRE) created by the interaction of ultra-high energy (UHE) photons with the magnetic field of the Sun. The lack of observation of those UHE and the difficulties for their identification given the current methodologies motivates this study. We performed simulations using the PRESHOWER program in order to simulate the expected extensive air showers which might be spatially correlated generated upon entering the Earth’s atmosphere. We found characteristic features like very thing and extremely elongates cascades of secondary photons with their corresponding energies spanning the entire cosmic range spectrum. Shower footprints are as large as hundreds of kilometres. An application of this study is the scenario of gamma-ray emission from the vicinity of the Sun as a result of ultra-high energy photon cascading in the solar magnetic field in order to understand recent observations made by the HAWC and Fermi-LAT observatories.