Solar wind bombardment onto exposed surfaces in the solar system produces an energetic component to the exospheres about those bodies. The solar wind energy and composition are highly dependent on the origin of the plasma. Using the measured composition of the slow wind, fast wind, solar energetic particle (SEP) population, and coronal mass ejection (CME), broken down into their various components, we have estimated the total sputter yield for each type of solar wind. We show that the heavy ion component, especially the He++ and 0+7 can greatly enhance the total sputter yield during times when the heavy ion population is enhanced. Folding in the flux, we compute the source rate for several species during different types of solar wind. Final...
Initial results from the measurement conducted by the dust particle experiment on the lunar orbiting...
Mercury's close orbit around the Sun, its weak intrinsic magnetic field and the absence of an atmosp...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95219/1/grl29279.pd
Solar-wind induced sputtering of the lunar surface includes, in principle, both kinetic and potentia...
We investigate the density and spatial distribution of the H2 exosphere of the Moon assuming various...
Sputtering of lunar regolith by protons as well as solar-wind heavy ions is considered. From prelimi...
Sodium in the lunar exosphere is released from the lunar regolith by several mechanisms. These mecha...
The effect of solar wind implanted volatiles into the top 100 nm of the lunar regolith plays a signi...
The sputtering of the lunar surface by the solar wind is examined as a possible mechanism of mass fr...
By analyzing the trajectories of ionized constituents of the lunar exosphere in time-varying electro...
Pyroxenes ((Ca, Mg, Fe, Mn)2Si2O6) belong to the most abundant rock forming minerals that make up th...
New simulation results for the sputtering of lunar soil surface by solar-wind protons and heavy ions...
The only species that have been confirmed in the lunar exosphere are Na, K, Ar, and He. However, mod...
The only species that have been so far detected in the lunar exosphere are Na, K, Ar,and He. However...
Context. The Moon has a tenuous exosphere consisting of atoms that are ejected from the surface by e...
Initial results from the measurement conducted by the dust particle experiment on the lunar orbiting...
Mercury's close orbit around the Sun, its weak intrinsic magnetic field and the absence of an atmosp...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95219/1/grl29279.pd
Solar-wind induced sputtering of the lunar surface includes, in principle, both kinetic and potentia...
We investigate the density and spatial distribution of the H2 exosphere of the Moon assuming various...
Sputtering of lunar regolith by protons as well as solar-wind heavy ions is considered. From prelimi...
Sodium in the lunar exosphere is released from the lunar regolith by several mechanisms. These mecha...
The effect of solar wind implanted volatiles into the top 100 nm of the lunar regolith plays a signi...
The sputtering of the lunar surface by the solar wind is examined as a possible mechanism of mass fr...
By analyzing the trajectories of ionized constituents of the lunar exosphere in time-varying electro...
Pyroxenes ((Ca, Mg, Fe, Mn)2Si2O6) belong to the most abundant rock forming minerals that make up th...
New simulation results for the sputtering of lunar soil surface by solar-wind protons and heavy ions...
The only species that have been confirmed in the lunar exosphere are Na, K, Ar, and He. However, mod...
The only species that have been so far detected in the lunar exosphere are Na, K, Ar,and He. However...
Context. The Moon has a tenuous exosphere consisting of atoms that are ejected from the surface by e...
Initial results from the measurement conducted by the dust particle experiment on the lunar orbiting...
Mercury's close orbit around the Sun, its weak intrinsic magnetic field and the absence of an atmosp...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95219/1/grl29279.pd