39 citations · 52 across the 3 of their papers we have counts for
9 papers
Using Atmospheric Impact Data to Model Meteoroid Close Encounters
P. M. Shober, T. Jansen-Sturgeon, P. A. Bland +6
Based on telescopic observations of Jupiter-family comets (JFCs), there is predicted to be a paucity of objects at sub-kilometre sizes. However, several bright fireballs and some m…
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…
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…
Where Did They Come From, Where Did They Go. Grazing Fireballs
P. M. Shober, T. Jansen-Sturgeon, E. K. Sansom +6
For centuries extremely-long grazing fireball displays have fascinated observers and inspired people to ponder about their origins. The Desert Fireball Network (DFN) is the largest…
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…
Fireball streak detection with minimal CPU processing requirements for the Desert Fireball Network data processing pipeline
Martin C. Towner, Martin Cupak, Robert M. Howie +6
The detection of fireballs streaks in astronomical imagery can be carried out by a variety of methods. The Desert Fireball Network--DFN--uses a network of cameras to track and tria…