activity
20162020
most citedDetermining fireball fates using the - criterion

39 citations · 46 across the 2 of their papers we have counts for

collaborators

11 papers

astro-ph.EP2020

Machine Learning for Semi-Automated Meteorite Recovery

Seamus Anderson, Martin Towner, Phil Bland +11

We present a novel methodology for recovering meteorite falls observed and constrained by fireball networks, using drones and machine learning algorithms. This approach uses images…

astro-ph.EP2020

Murrili meteorite's fall and recovery from Kati Thanda

E. K. Sansom, P. A. Bland, M. C. Towner +9

On the 27th of November 2015, at 10:43:45.526 UTC, a fireball was observed across South Australia by ten Desert Fireball Network observatories lasting 6.1 s. A kg meteoroi…

astro-ph.EP2020

A Global Fireball Observatory

H. A. R. Devillepoix, M. Cupák, P. A. Bland +46

The world's meteorite collections contain a very rich picture of what the early Solar System would have been made of, however the lack of spatial context with respect to their pare…

astro-ph.EP20197 cited

Identification of a Minimoon Fireball

P. M. Shober, T. Jansen-Sturgeon, E. K. Sansom +6

Objects gravitationally captured by the Earth-Moon system are commonly called temporarily captured orbiters (TCOs), natural Earth satellites, or minimoons. TCOs are a crucially imp…

astro-ph.EP2019

A Dynamic Trajectory Fit to Multi-Sensor Fireball Observations

Trent Jansen-Sturgeon, Eleanor K. Sansom, Hadrien A. R. Devillepoix +4

Meteorites with known orbital origins are key to our understanding of Solar System formation and the source of life on Earth. However, these pristine samples of space material are…

astro-ph.IM2019

Recreating the OSIRIS-REx Slingshot Manoeuvre from a Network of Ground-Based Sensors

Trent Jansen-Sturgeon, Benjamin A. D. Hartig, Gregory J. Madsen +20

Optical tracking systems typically trade-off between astrometric precision and field-of-view. In this work, we showcase a networked approach to optical tracking using very wide fie…