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February 14, 20260 citationsOpen Access

Advances in reconstructing the cosmic-ray energy spectrum with IceTop

ICIceCube CollaborationLPLilly PyrasLPLarissa Paul

Key Points

  • To enhance the measurement accuracy of the cosmic-ray energy spectrum using the IceTop array.
  • Analyzed over a decade of cosmic-ray data considering snow overburdens on the detector.
  • Developed new analysis cuts to boost event rates and improve reconstruction quality.
  • Introduced a reconstruction method that fits electromagnetic and muonic components separately. World-largely incorporates deep in-ice detector data.
  • Increased event statistics due to enhanced detection methods.
  • Extended the IceTop spectrum toward higher energies, improving cosmic-ray analysis.
  • Improved reconstruction of air showers even with cores outside the IceTop array.

Abstract

The IceTop array at the surface of the IceCube Neutrino Observatory measures extensive air showers produced by cosmic-ray particles with energies from PeV up to EeV, covering the transition region from galactic to extragalactic sources. This contribution presents significant improvements that will enhance the measurement of the cosmic-ray energy spectrum. (I) To analyze more than a decade of data with increasing snow overburdens on the detector, an improved method to handle the time-dependent attenuation of the detector signals was developed. (II) New analysis cuts have been developed to increase the measured event rate while improving the reconstruction quality. (III) A new reconstruction method that separately fits the electromagnetic and muonic components, while incorporating data from the deep in-ice detector, enables the reconstruction of air showers with cores outside the IceTop array, up to zenith angles of 50°. These improvements will significantly increase the event statistics and extend the IceTop spectrum towards higher energies.

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Cite This Study

Collaboration et al. (2025) studied this question.

synapsesocial.com/papers/699011a12ccff479cfe58820https://doi.org/10.5445/ir/1000190533
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