Context. The interplanetary dust complex is currently understood to be largely the result of dust production from Jupiter-family comets, with contributions also from longer-period comets (Halley- and Oort-type) and collisionally produced asteroidal dust. Aims. Here we develop a dynamical model of the interplanetary dust cloud from these source populations in order to develop a risk and hazard assessment tool for interplanetary meteoroids in the inner solar system. Methods. The long-duration (1 Myr) integrations of dust grains from Jupiter-family and Halley-type comets and main belt asteroids were used to generate simulated distributions that were compared to COBE infrared data, meteor data, and the diameter distribution of lunar microcrater...
Long-period comet C/2013 A1 (Siding Spring) is headed for a close encounter with Mars on 2014 Oct 19...
We developed a parametric model of the spatial distribution of sporadic meteoroids by taking their p...
(Topical Collection: Cosmic Dust from the Laboratory to the Stars, Edited by Rafael Rodrigo, Jürgen ...
International audienceContext. The interplanetary dust complex is currently understood to be largely...
Improved models of the interplanetary meteoroid environment enjoy the interest of both spacecraft en...
Dikarev V, Jehn R, Grun E. Towards a new model of the interplanetary meteoroid environment. Advances...
Dikarev V, Grun E, Baggaley J, Galligan D, Landgraf M, Jehn R. Modeling the sporadic meteoroid backg...
Context. Meteoroid impacts are an important source of neutral atoms for the exosphere of Mercury. We...
Context. Meteoroid impacts are an important source of neutral atoms for the exosphere of Mercury. We...
Context. Here we describe a new model of the dust streams of comet 67P/Churyumov-Gerasimenko that ha...
International audienceThe Interplanetary Meteoroid Environment for eXploration (IMEX) project, funde...
International audienceCollisions of meteoroids with interplanetary dust grain fragments particles, d...
The Martian Moons Exploration (MMX) spacecraft is a JAXA mission to Mars and its moons Phobos and De...
Long-period comet C/2013 A1 (Siding Spring) is headed for a close encounter with Mars on 2014 Oct 19...
We developed a parametric model of the spatial distribution of sporadic meteoroids by taking their p...
(Topical Collection: Cosmic Dust from the Laboratory to the Stars, Edited by Rafael Rodrigo, Jürgen ...
International audienceContext. The interplanetary dust complex is currently understood to be largely...
Improved models of the interplanetary meteoroid environment enjoy the interest of both spacecraft en...
Dikarev V, Jehn R, Grun E. Towards a new model of the interplanetary meteoroid environment. Advances...
Dikarev V, Grun E, Baggaley J, Galligan D, Landgraf M, Jehn R. Modeling the sporadic meteoroid backg...
Context. Meteoroid impacts are an important source of neutral atoms for the exosphere of Mercury. We...
Context. Meteoroid impacts are an important source of neutral atoms for the exosphere of Mercury. We...
Context. Here we describe a new model of the dust streams of comet 67P/Churyumov-Gerasimenko that ha...
International audienceThe Interplanetary Meteoroid Environment for eXploration (IMEX) project, funde...
International audienceCollisions of meteoroids with interplanetary dust grain fragments particles, d...
The Martian Moons Exploration (MMX) spacecraft is a JAXA mission to Mars and its moons Phobos and De...
Long-period comet C/2013 A1 (Siding Spring) is headed for a close encounter with Mars on 2014 Oct 19...
We developed a parametric model of the spatial distribution of sporadic meteoroids by taking their p...
(Topical Collection: Cosmic Dust from the Laboratory to the Stars, Edited by Rafael Rodrigo, Jürgen ...