4.6 Article

Reconstructing non-repeating radio pulses with Information Field Theory

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1475-7516/2021/04/071

关键词

cosmic rays detectors; neutrino detectors; ultra high energy cosmic rays; ultra high energy photons and neutrinos

资金

  1. German research foundation (DFG) [NE 2031/2-1]

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This paper discusses the importance of radio signals from particle showers in dielectric media for detecting cosmic rays and neutrinos, as well as the application of Information Field Theory to accurately reconstruct pulse parameters from noisy data.
Particle showers in dielectric media produce radio signals which are used for the detection of both ultra-high energy cosmic rays and neutrinos with energies above a few PeV. The amplitude, polarization, and spectrum of these short, broadband radio pulses allow us to draw conclusions about the primary particles that caused them, as well as the mechanics of shower development and radio emission. However, confidently reconstructing the radio signals can pose a challenge, as they are often obscured by background noise. Information Field Theory offers a robust approach to this challenge by using Bayesian inference to calculate the most likely radio signal, given the recorded data. In this paper, we describe the application of Information Field Theory to radio signals from particle showers in both air and ice and demonstrate how accurately pulse parameters can be obtained from noisy data.

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