English

Trigger system for the Payload for Ultrahigh Energy Observations (PUEO) balloon-borne neutrino detector

Instrumentation and Methods for Astrophysics 2026-07-06 v1 High Energy Astrophysical Phenomena High Energy Physics - Experiment Instrumentation and Detectors

Abstract

The Payload for Ultrahigh Energy Observations (PUEO) is a NASA balloon-borne instrument for the detection of ultra-high energy (UHE) neutrinos with energies above 1017.5 eV10^{17.5}~\textrm{eV} via either the Askaryan effect or geomagnetic emissions from an upward-going air shower. The main instrument trigger system for PUEO is a fully digital supersample rate beamformer based on 24 Xilinx Radio Frequency System-on-a-Chip (RFSoC) digitizers sampling 192 channels operating at 3 GSa/s3~\textrm{GSa/s} and a system clock frequency of 375 MHz375~\textrm{MHz}. The trigger implements frequency band conditioning, dynamic radio-frequency interference (RFI) rejection, and matched filtering, with significant emphasis on optimization to reduce both the power and resource usage while maintaining sensitivity. The system implements 48 total synthetic antenna beams with up to 8 antennas each, covering a 25\sim25^\circ range in zenith and 60\sim60^\circ range in azimuth. Preflight testing demonstrated a trigger performance of a minimum signal-to-noise ratio (SNR) of 1.5\sim1.5 using simulated signals while consuming between 57 W5-7~\textrm{W} in the trigger logic.

Keywords

Cite

@article{arxiv.2607.05285,
  title  = {Trigger system for the Payload for Ultrahigh Energy Observations (PUEO) balloon-borne neutrino detector},
  author = {Q. Abarr and J. Alfaro and P. Allison and J. Alvarez-Muñiz and T. Anderson and H. Barnett and A. Basharina-Freshville and J. J. Beatty and L. Beaufore and D. Z. Besson and M. Betts and R. Bose and D. Braun and B. Chamanbahar and P. Chen and Y. Chen and J. M. Clem and T. Coakley and A. Connolly and L. Cremonesi and A. Cummings and P. Dasgupta and C. Deaconu and J. Flaherty and C. Godden and P. W. Gorham and C. Hornhuber and J. Hoffman and K. Hughes and A. Hynous and A. Jung and A. M. Kofman and Y. Ku and D. Kullgren and C. -Y. Kuo and P. Linton and L. Lisalda and T. C. Liu and W. Luszczak and S. C. Mackey and Z. Martin and K. McBride and C. Miki and J. Nam and R. J. Nichol and A. Novikov and A. Nozdrina and E. Oberla and S. Prohira and H. Pumphrey and D. Radomski and B. F. Rauch and R. Scrandis and D. Seckel and M. F. H. Seikh and J. Shiao and G. Simburger and J. Tutt and A. G. Vieregg and S. -H. Wang and D. Washington and C. Welling and P. Windischhofer and S. A. Wissel and C. Xie and J. Yao and R. Young and E. Zas and A. Zeolla},
  journal= {arXiv preprint arXiv:2607.05285},
  year   = {2026}
}

Comments

10 pages, 11 figures, submitted to IEEE Transactions on Nuclear Science