Delivery of dust grains from comet C/2013 A1 (Siding Spring) to Mars
arXiv:1404.7168 · doi:10.1088/2041-8205/787/2/L35
Abstract
Comet C/2013 A1 (Siding Spring) will have a close encounter with Mars on October 19, 2014. We model the dynamical evolution of dust grains from the time of their ejection from the comet nucleus to the Mars close encounter, and determine the flux at Mars. Constraints on the ejection velocity from Hubble Space Telescope observations indicate that the bulk of the grains will likely miss Mars, although it is possible that a few-percent of grains with higher velocities will reach Mars, peaking approximately 90--100 minutes after the close approach of the nucleus, and consisting mostly of millimeter-radius grains ejected from the comet nucleus at a heliocentric distance of approximately 9~AU or larger. At higher velocities, younger grains from sub-millimeter to several millimeter can reach Mars too, although an even smaller fraction of grains is expected have these velocities, with negligible effect on the peak timing. Using NEOWISE observations of the comet, we can estimate that the maximum fluence will be of the order of grains/m. We include a detailed analysis of how the expected fluence depends on the grain density, ejection velocity, and size-frequency distribution, to account for current model uncertainties and in preparation of possible refined model values in the near future.
11 pages, 5 figures, accepted for publication in ApJL
References in corpus (1)
Cited by in corpus (9)
- Trajectory analysis for the nucleus and dust of comet C/2013~A1 (Siding Spring)
- Observations of Comet ISON (C/2012 S1) from Lowell Observatory
- Constraining the Dust Coma Properties of Comet C/Siding Spring (2013 A1) at Large Heliocentric Distances
- The pre-perihelion activity of dynamically new comet C/2013 A1 (Siding Spring) and its close encounter with Mars
- NEOWISE observations of comet C/2013 A1 (Siding Spring) as it approaches Mars
- Infrared Spectroscopy of HR 4796A's Bright Outer Cometary Ring + Tenuous Inner Hot Dust Cloud
- Comet C/2013 A1 (Siding Spring) as seen with the Herschel Space Observatory
- A Photometric and Dynamic Study of Comet C/2013 A1 (Siding Spring) from Observations at a Heliocentric Distance of ~4.1 AU
- Preview of Comet C/2021 A1 (Leonard) and Its Encounter with Venus