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Our Publications

1. “
We are all the Cosmic-Ray Extremely Distributed Observatory”,
N. Dhital, et al. (CREDO Collab.), PoS (ICRC2017) 1078, 2017.
[arXiv:1709.05196, DOI: 10.22323/1.301.1078].

2. “Search for electromagnetic super-preshowers using gamma-ray telescopes”,
K. A. Cheminant et al. (CREDO Collab.), PoS (ICRC2017) 860, 2017.
[arXiv:1709.05180, DOI: 10.22323/1.301.0860]. 

3. “Cosmic-Ray Extremely Distributed Observatory: a global cosmic ray detection framework”,
O. Sushchov, et al. (CREDO Collab.), Advances in Astronomy and Space Physics, Volume 7, Issue 1-2, PP. 23-29 , 2017.
[arXiv:1709.05230v2, DOI: 10.17721/2227-1481.7.23-29].

4. “Search for Extensive Photon Cascades with the Cosmic-Ray Extremely Distributed Observatory” ,
P. Homola, et al. (CREDO Collab.), CERN Proceedings, 1 (2018) 289, 2018.
[arXiv:1804.05614 , DOI: 10.23727/CERN-Proceedings-2018-001.289

5. “Cosmic Ray Extremely Distributed Observatory: a global network of detectors to probe contemporary physics mysteries”,
K. A. Cheminant, et al. (CREDO Collab.), Acta Physica Polonica B Proceedings Supplement , Vol. 11 No. 3 (2018), p.489, 2018.
[arXiv:1810.06953, DOI: 10.5506/APhysPolBSupp.11.489].

6. “Cosmic-Ray Extremely Distributed Observatory: status and perspectives”,
D. Góra, et al. (CREDO Collab.), Universe 2018,4(11) 111, 2018.
[arXiv:1810.10410, DOI: 10.3390/universe4110111].

7. “Detection of Cosmic-Ray Ensembles with CREDO”,
K. W. Woźniak (CREDO Collaboration) proceedings of the ISVHECRI 2018 conference.
[arXiv:1811.10248, DOI: 10.1051/epjconf/201920815006

8. “Cosmic ray ensembles as signatures of ultra-high energy photons interacting with the solar magnetic field”,
N. Dhital, et al. (CREDO Collab.), 2018.
[arXiv:1811.10334, DOI:].

9. “Cosmic Ray Extremely Distributed Observatory: Status and perspectives of a global cosmic ray detection framework,
D. Gora, et al. (CREDO Collab.), PoS (ICRC2019) 272, 2019.
[arXiv:1908.04139, DOI:].

10. “Cosmic ray ensembles from ultra-high energy photons propagating in the galactic and intergalactic space ,
N. Dhital, et al. (CREDO Collab.), PoS (ICRC2019) 239, 2019.
[arXiv:1908.04600, DOI:].

11. “Search for ultra-high energy photons: observing the preshower effect with gamma-ray telescopes ,
K. A. Cheminant, et al. (CREDO Collab.), PoS (ICRC2019) 688, 2019.
[arXiv:1908.08805, DOI:].

12. “Public engagement as a scientific tool to implement multi-messenger strategies with the Cosmic-Ray Extremely Distributed Observatory ,
P. Homola, et al. (CREDO Collab.),  PoS (Asterics2019) 034, 2019.
[arXiv:1908.09734, DOI:].

13. “A communication solution for portable detectors of the “Cosmic Ray Extremely Distributed Observatory”,
K. Smelcerz, et al. (CREDO Collab.), PoS (ICRC2019) 428, 2019.
[arXiv:1908.11288, DOI:].

14. “Recognition and classification of the cosmic-ray events in images captured by CMOS/CCD cameras”,
M. Niedźwiecki, et al. (CREDO Collab.), PoS (ICRC2019) 367, 2019.
[arXiv:1909.01929, DOI:].

15. “Search for ultra-high energy photons through preshower effect with gamma-ray telescopes: Study of CTA-North efficiency”,
K. A. Cheminant, et al. (CREDO Collab.), Astroparticle Physics, Volume 123, 102489, December 2020.
[arXiv:2007.11105, DOI: 10.1016/j.astropartphys.2020.102489].