Kinetic impact may be the most reliable and easily implemented method to deflect hazardous asteroids using current technology. Depending on warning time, it can be effective on asteroids with diameters of a few hundred meters. Current impact deflection research often focuses on the orbital dynamics of asteroids. In this paper, we use the ejection outcome of a general oblique impact to calculate how an asteroid’s rotational and translational state changes after impact. The results demonstrate how small impactors affect the dynamical state of small asteroids having a diameter of about 100 m. According to these consequences, we propose using several small impactors to hit an asteroid continuously and gently, making the deflection mission relat...
The problem of artificially changing the orbit of an asteroid to avoid possible future impacts is di...
In this paper the ability of a small kinetic impactor spacecraft to mitigate an Earth-threatening as...
In this paper the ability of a small kinetic impactor spacecraft to mitigate an Earth-threatening as...
A novel concept for the deflection of rotating asteroids is presented, based on the conversion of th...
Deflection missions to near-Earth asteroids will encounter non-negligible uncertain- ties in the phy...
About 10% of the observed asteroids have rotational periods lower than P = 3h and seem to be relativ...
Nuclear explosions, and a wide variety of technologies not yet realized, have been proposed to defle...
International audienceDeflection missions to near-Earth asteroids will encounter non-negligible unce...
We present a concept for a kinetic impactor demonstration mission, which aims to change the spin rat...
This paper re-examines the deflection concept with, arguably, the highest technological readiness le...
Mission scenarios for the deflection of fictitious asteroid 2017 PDC are investigated. Two deflectio...
The rotation rates of asteroids, which are deduced from periodic fluctuations in their brightnesses,...
The consequences of the fragmentation of an Earth-threatening asteroid due to an attempted deflectio...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76523/1/AIAA-2004-1446-296.pd
The problem of artificially changing the orbit of an asteroid to avoid possible future impacts is di...
In this paper the ability of a small kinetic impactor spacecraft to mitigate an Earth-threatening as...
In this paper the ability of a small kinetic impactor spacecraft to mitigate an Earth-threatening as...
A novel concept for the deflection of rotating asteroids is presented, based on the conversion of th...
Deflection missions to near-Earth asteroids will encounter non-negligible uncertain- ties in the phy...
About 10% of the observed asteroids have rotational periods lower than P = 3h and seem to be relativ...
Nuclear explosions, and a wide variety of technologies not yet realized, have been proposed to defle...
International audienceDeflection missions to near-Earth asteroids will encounter non-negligible unce...
We present a concept for a kinetic impactor demonstration mission, which aims to change the spin rat...
This paper re-examines the deflection concept with, arguably, the highest technological readiness le...
Mission scenarios for the deflection of fictitious asteroid 2017 PDC are investigated. Two deflectio...
The rotation rates of asteroids, which are deduced from periodic fluctuations in their brightnesses,...
The consequences of the fragmentation of an Earth-threatening asteroid due to an attempted deflectio...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76523/1/AIAA-2004-1446-296.pd
The problem of artificially changing the orbit of an asteroid to avoid possible future impacts is di...
In this paper the ability of a small kinetic impactor spacecraft to mitigate an Earth-threatening as...
In this paper the ability of a small kinetic impactor spacecraft to mitigate an Earth-threatening as...