A digital version of Rossi's coincidence circuit

After more than a century since their discovery, cosmic rays remain a very active and fascinating research field and the coincidence method developed in those early studies is still a fundamental tool in experimental nuclear and particle physics. In this paper, Bruno Rossi's coincidence circuit, originally developed in 1930, is replaced by digital signal analysis of the outputs of three modern Geiger–Müller (GM) tubes. These tubes are conceptually similar to their historical counterparts, and their outputs are digitized using a computer sound card. The relation of coincidence rate to the thickness of overlying lead shielding, known as Rossi's curve, is reconstructed and compared with original historical data, the first experimental evidence of the electromagnetic showers. The digital implementation presented in this paper provides an effective and cheap educational tool for studying cosmic rays through signal coincidences using GM tubes and for approaching and deepening concepts that are still important in current physics research, like resolving time, and true and random coincidences. The total cost of the apparatus, including three detectors and the sound card, is around 1000 €.

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Publication Details

Journal
American Journal of Physics
Published
2026-09-22
DOI
https://doi.org/10.1119/5.0325826
Primary Topic
Radioactive Decay and Measurement Techniques
Type
article
Field-Weighted Citation Impact
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article

A digital version of Rossi's coincidence circuit

Samuele Straulino, Tommaso Righi, Marcello Carlà, G. Poggi
American Journal of Physics
Radioactive Decay and Measurement Techniques
article

A digital version of Rossi's coincidence circuit

Samuele Straulino, Tommaso Righi, Marcello Carlà, G. Poggi
article en

Abstract

After more than a century since their discovery, cosmic rays remain a very active and fascinating research field and the coincidence method developed in those early studies is still a fundamental tool in experimental nuclear and particle physics. In this paper, Bruno Rossi's coincidence circuit, originally developed in 1930, is replaced by digital signal analysis of the outputs of three modern Geiger–Müller (GM) tubes. These tubes are conceptually similar to their historical counterparts, and their outputs are digitized using a computer sound card. The relation of coincidence rate to the thickness of overlying lead shielding, known as Rossi's curve, is reconstructed and compared with original historical data, the first experimental evidence of the electromagnetic showers. The digital implementation presented in this paper provides an effective and cheap educational tool for studying cosmic rays through signal coincidences using GM tubes and for approaching and deepening concepts that are still important in current physics research, like resolving time, and true and random coincidences. The total cost of the apparatus, including three detectors and the sound card, is around 1000 €.

American Journal of PhysicsVol. 94(10)
Istituto Nazionale di Fisica Nucleare, Sezione di Firenze (IT), University of Florence (IT)
Openalex Percentile: Top 12%
Radioactive Decay and Measurement Techniques
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A digital version of Rossi's coincidence circuit — Samuele Straulino, Tommaso Righi, et al. · American Journal of Physics (2026) | TGRS Research Map | TGRS