Activity of the 2013 Geminid meteoroid stream at the Moon
Author(s) -
J. R. Szalay,
Petr Pokorný,
Peter Jenniskens,
M. Horányi
Publication year - 2017
Publication title -
monthly notices of the royal astronomical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.058
H-Index - 383
eISSN - 1365-2966
pISSN - 0035-8711
DOI - 10.1093/mnras/stx3007
Subject(s) - meteoroid , ejecta , physics , regolith , asteroid , meteorite , astrobiology , solar system , longitude , astrophysics , astronomy , interplanetary medium , atmosphere (unit) , ecliptic , full moon , solar wind , interplanetary spaceflight , latitude , meteorology , quantum mechanics , magnetic field , supernova
The Lunar Dust Experiment (LDEX) onboard the Lunar Atmosphere and Dust Environment Explorer mission orbited the Moon from 2013 October to 2014 April and detected impact ejecta generated by the continual bombardment of meteoroids to the lunar surface. While the Moon transited the Geminid meteoroid stream, LDEX observed a large enhancement in the lunar impact ejecta cloud, particularly above the portion of lunar surface normal to the Geminids radiant. Here, we present the LDEX measurements during the Geminids, using the surface density of impact ejecta at the Moon as a proxy for meteoroid activity. We find two peaks during the Geminids, a smaller peak at solar longitude λ ⊙ = 261 ° .3 ± 0 ° .12 followed by a larger peak at λ ⊙ = 262 ° .2 ± 0 ° .12, with a surface density ratio of 2.6 between the two. Both peaks coincide with radar observations of shallower mass indices than most of the Geminids, suggesting an enhancement of larger particles during the two peaks. The total duration of the 2013 Geminid meteoroid shower at the Moon measured by LDEX is Δ λ ⊙ = 1 ° .7 for activity > 10 per cent of the peak value, corresponding to a width of 1.9 × 10 6 km normal to the Geminids velocity vector. The timing of the main observed peak matches ground-based visual observations of meteors with magnitude of -1 to -3 and suggests LDEX is detecting ejecta from primary impactors with radii ~2 mm to 2 cm during this time.
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