Unlocking the hidden potential of pulsar astronomy
D. Kaur, G. Hobbs, A. Zic, J. R. Dawson, J. Morgan, W. Ling, S. Camtepe, J. Pieprzyk, M. C. M. Cheung

TL;DR
This paper explores the expanding roles of pulsar astronomy in societal and industrial applications, including navigation, space weather monitoring, and data analysis, highlighting new practical uses beyond traditional scientific research.
Contribution
It introduces novel applications of pulsar data and discusses the feasibility of compact detection systems for societal and industrial purposes.
Findings
Compact pulsar detectors can identify bright pulsars like Vela.
A ~4m dish at 700 MHz can detect multiple pulsars.
Pulsar data can be used for space weather and random number generation.
Abstract
Pulsars have traditionally been used for research into fundamental physics and astronomy. In this paper, we investigate the expanding applications of radio pulsars in societal and industrial domains beyond their conventional scientific roles. We describe emerging applications in positioning, navigation, timing and synchronization, random number generation, space weather monitoring, public engagement, antenna calibration techniques, and leveraging extensive pulsar data sets generated by large-scale observatories. Such pulsar data sets have already been used to demonstrate quantum-computing algorithms. We evaluate the potential for compact radio receiver systems for pulsar detection by describing optimal observing bands. We show that relatively simple and compact receiver systems can detect the brightest pulsar, Vela. The equivalent of an ~4m-diameter dish with a small bandwidth…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Radio Astronomy Observations and Technology · Space Science and Extraterrestrial Life
