Making Radio Astronomy Accessible: A Case Study of a Reproducible, Low‐Cost, Portable Table‐top Radio Telescope at the IAU GA 2024

Urban environments, daytime conditions, and limited resources typically prevent live astronomical demonstrations – but this case study shows that they no longer have to. We deployed a reproducible, low‐cost, portable Table‐top Radio Telescope (TTRT) during the IAU General Assembly 2024 in Cape Town to test whether meaningful hands‐on radio‐astronomical observations could be achieved in real outreach settings. The TTRT detected the Milky Way’s 21‐cm hydrogen line within 30 seconds, even in cloudy weather and under strong urban radio‐frequency interference(RFI), enabling live demonstrations that would have been impossible with optical instruments. Across universities, schools, and a science centre, participants engaged directly with real‐time spectral data, Doppler‐shift measurements, and hands-on operation, while construction activities deepened conceptual understanding and ownership. The deployment revealed clear lessons learned for urban outreach – managing RFI, selecting effective pointing strategies, and coordinating logistics at large venues – and informed practical recommendations for future1implementations. These results demonstrate how compact, accessible radio‐astronomy instruments can transform participation in observational science.

Authors

Publication Details

Journal
Communicating astronomy with the public journal
Published
2026-09-15
DOI
https://doi.org/10.5281/zenodo.22761042
Primary Topic
Radio Astronomy Observations and Technology
Type
article
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article

Making Radio Astronomy Accessible: A Case Study of a Reproducible, Low‐Cost, Portable Table‐top Radio Telescope at the IAU GA 2024

Mathieu Isidro, Matthew Taylor, Shin'ichiro Asayama
Communicating astronomy with the public journal
Radio Astronomy Observations and Technology
article

Making Radio Astronomy Accessible: A Case Study of a Reproducible, Low‐Cost, Portable Table‐top Radio Telescope at the IAU GA 2024

Mathieu Isidro, Matthew Taylor, Shin'ichiro Asayama
article en

Abstract

Urban environments, daytime conditions, and limited resources typically prevent live astronomical demonstrations – but this case study shows that they no longer have to. We deployed a reproducible, low‐cost, portable Table‐top Radio Telescope (TTRT) during the IAU General Assembly 2024 in Cape Town to test whether meaningful hands‐on radio‐astronomical observations could be achieved in real outreach settings. The TTRT detected the Milky Way’s 21‐cm hydrogen line within 30 seconds, even in cloudy weather and under strong urban radio‐frequency interference(RFI), enabling live demonstrations that would have been impossible with optical instruments. Across universities, schools, and a science centre, participants engaged directly with real‐time spectral data, Doppler‐shift measurements, and hands-on operation, while construction activities deepened conceptual understanding and ownership. The deployment revealed clear lessons learned for urban outreach – managing RFI, selecting effective pointing strategies, and coordinating logistics at large venues – and informed practical recommendations for future1implementations. These results demonstrate how compact, accessible radio‐astronomy instruments can transform participation in observational science.

Communicating astronomy with the public journal
Sustainable cities and communities
Openalex Percentile: Top 10%
Radio Astronomy Observations and Technology
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Making Radio Astronomy Accessible: A Case Study of a Reproducible, Low‐Cost, Portable Table‐top Radio Telescope at the IAU GA 2024 — Mathieu Isidro, Matthew Taylor, et al. · Communicating astronomy with the public journal (2026) | TGRS Research Map | TGRS