Karlsruhe School of Elementary Particle and Astroparticle Physics: Science and Technology (KSETA)

Matias Perlin

Information

Institute: IKP (KIT) - ITeDA (UNSAM, Argentina)
Email: matias.perlin@kit.edu

Reviewed Journals

publications-reviewed
[1] Alexander Aab et al. Limits on point-like sources of ultra-high-energy neutrinos with the Pierre Auger Observatory. JCAP, 1911(11):004, 2019. [ bib | DOI | arXiv ]
[2] A. Aab et al. Data-driven estimation of the invisible energy of cosmic ray showers with the Pierre Auger Observatory. Submitted to: Phys. Rev. D, 2019. [ bib | arXiv ]
[3] Alexander Aab et al. Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory. JCAP, 1910(10):022, 2019. [ bib | DOI | arXiv ]
[4] Alexander Aab et al. Multi-Messenger Physics with the Pierre Auger Observatory. Front. Astron. Space Sci., 6:24, 2019. [ bib | DOI | arXiv ]
[5] Alexander Aab et al. Measurement of the average shape of longitudinal profiles of cosmic-ray air showers at the Pierre Auger Observatory. Submitted to: JCAP, 2018. [ bib | arXiv ]
[6] A. Aab et al. Large-scale cosmic-ray anisotropies above 4 EeV measured by the Pierre Auger Observatory. Astrophys. J., 868(1):4, 2018. [ bib | DOI | arXiv ]
[7] Alexander Aab et al. Observation of inclined EeV air showers with the radio detector of the Pierre Auger Observatory. JCAP, 1810(10):026, 2018. [ bib | DOI | arXiv ]
[8] Alexander Aab et al. An Indication of anisotropy in arrival directions of ultra-high-energy cosmic rays through comparison to the flux pattern of extragalactic gamma-ray sources. Astrophys. J., 853(2):L29, 2018. [ bib | DOI | arXiv ]
[9] Alexander Aab et al. Inferences on mass composition and tests of hadronic interactions from 0.3 to 100 EeV using the water-Cherenkov detectors of the Pierre Auger Observatory. Phys. Rev., D96(12):122003, 2017. [ bib | DOI | arXiv ]
[10] A. Albert et al. Search for High-energy Neutrinos from Binary Neutron Star Merger GW170817 with ANTARES, IceCube, and the Pierre Auger Observatory. Astrophys. J., 850(2):L35, 2017. [ bib | DOI | arXiv ]
[11] B. P. Abbott et al. Multi-messenger Observations of a Binary Neutron Star Merger. Astrophys. J., 848(2):L12, 2017. [ bib | DOI | arXiv ]
[12] Alexander Aab et al. Calibration of the logarithmic-periodic dipole antenna (LPDA) radio stations at the Pierre Auger Observatory using an octocopter. JINST, 12(10):T10005, 2017. [ bib | DOI | arXiv ]
[13] Alexander Aab et al. Observation of a Large-scale Anisotropy in the Arrival Directions of Cosmic Rays above 8 ×1018 eV. Science, 357(6537):1266--1270, 2017. [ bib | DOI | arXiv ]
[14] Alexander Aab et al. Spectral Calibration of the Fluorescence Telescopes of the Pierre Auger Observatory. Astropart. Phys., 95:44--56, 2017. [ bib | DOI | arXiv ]
[15] Alexander Aab et al. Multi-resolution anisotropy studies of ultrahigh-energy cosmic rays detected at the Pierre Auger Observatory. JCAP, 1706(06):026, 2017. [ bib | DOI | arXiv ]
[16] Alexander Aab et al. Combined fit of spectrum and composition data as measured by the Pierre Auger Observatory. JCAP, 1704(04):038, 2017. [Erratum: JCAP1803,no.03,E02(2018)]. [ bib | DOI | arXiv ]
[17] Alexander Aab et al. Search for photons with energies above 1018 eV using the hybrid detector of the Pierre Auger Observatory. JCAP, 1704(04):009, 2017. [ bib | DOI | arXiv ]
[18] Alexander Aab et al. A targeted search for point sources of EeV photons with the Pierre Auger Observatory. Astrophys. J., 837(2):L25, 2017. [ bib | DOI | arXiv ]
[19] Alexander Aab et al. Impact of Atmospheric Effects on the Energy Reconstruction of Air Showers Observed by the Surface Detectors of the Pierre Auger Observatory. JINST, 12(02):P02006, 2017. [ bib | DOI | arXiv ]

This file was generated by bibtex2html 1.98.

KSETA Topical Courses

2019-10

2018-03

2017-09

Observational Astronomy. Lecturer: Dr. Victoria Grinberg.
Advanced topics in QCD. Lecturer: Dr. Guido Bell.
Classical solutions for elementary particle physics. Lecturer: Prof. Dr. Frans Klinkhamer.
Particle physics for astroparticle physicists. Lecturer: Dr. Roger Wolf and Dr. Matthias Mozer.
Introduction to Graph Theory. Lecturer: Daniel Funke.
Neutrino Physics and neutrino Oscillations. Lecturer: Dr. Christian Weinheimer.

Other Courses

2018-03_2018-06
2017-11
2017-10
2017-09_2018-02

A1.2 German Course, UNSAM, Argentina.
Statistical Methods for (Astro-)Particle Physics. Lecturer: Prof. Dr. Ricardo Piegaia. KSETA Course, KIT.
Particle acceleration in astrophysics. Lecturer: Prof. Dr. Gustavo E. Romero. KSETA Course, KIT.
A1.1 German Course, Studienkolleg für ausländische Studierende, KIT.

Conference talks and seminars

2019-09
2019-03
2018-11
2018-10
2018-09

2017-09

HIRSAP Workshop. Talk title: Muon deficit at AMIGA energies. Karlsruhe.
Auger Collaboration Meeting. Talk title: Insight into muon deficit at 10^17.5 eV. Malargüe, Argentina.
HIRSAP Meeting. Talk title: Hadronic interactions models and muon deficit. UNSAM, Argentina.
Attendance to the ISAPP School, CERN, Geneva.
Annual Meeting of the Argentinian Physics Association. Talk title: Hadronic interactions models in extensive air showers. Buenos Aires, Argentina.
Auger Youngsters Meeting. Talk title: Hadronic interactions in extensive air showers. Hamburg, Germany.

Teaching

2018-03/2019-07
2017-01/2017-08

Teaching Assistant at Physics Department of the Faculty of Science at the University of Buenos Aires, Argentina.
Teaching Assistant at Mathematics Department of the CBC at the University of Buenos Aires, Argentina.