Context. The FIELDS instrument onboard Parker Solar Probe (PSP) observes dust impacts on the spacecraft. The derived dust flux rates suggest that the particles originate from the vicinities of the Sun and are ejected by radiation pressure. Radiation pressure typically ejects particles of several 100 nm and smaller, which are also affected by the electromagnetic force. Aims. We aim to understand the influence of the electromagnetic force on the dust trajectories and to predict the dust fluxes along the orbit of PSP, within 1 AU and near Earth. Methods. We study the trajectories of dust particles influenced by gravity, radiation pressure, and the electromagnetic force assuming that pitch-angle scattering can be neglected (scatter-free...
During the Voyager 1 and 2 flybys of the outer planets it has been demonstrated that the plasma wave...
When viewed from Earth, most of what we observe of a comet is dust. The influence of solar radiation...
Context. Theoretical predictions demonstrate that small (<0.1 μm) interstellar grains are mostly exc...
Context. The FIELDS instrument onboard Parker Solar Probe (PSP) observes dust impacts on the spacecr...
Context. The FIELDS instrument onboard Parker Solar Probe (PSP) observes dust impacts on the spacecr...
The mission Parker Solar Probe (PSP) provides a new opportunity to make in-situ measurements of dust...
The electric and magnetic field instrument suite FIELDS on board the NASA Parker Solar Probe and the...
International audienceOver the last two years, and six near-Sun encounter orbits, the Parker Solar P...
We review the current knowledge and understanding of dust in the inner solar system. The major sourc...
The Parker Solar Probe (PSP) mission by NASA and the Solar Orbiter (SolO) mission by ESA are two rec...
International audienceInterplanetary Dust Particles (IDPs) consist of the pummeled remnants of aster...
International audienceThis work examines the variation of interplanetary dust count rates and direct...
ESA’s Solar Orbiter spacecraft provides a new opportunity to investigate the inner heliosphere close...
Cosmic dust particles are small solid objects observed in the solar planetary system and in many ast...
The dynamics of dust particles in the solar system is dominated by solar gravity, by solar radiation...
During the Voyager 1 and 2 flybys of the outer planets it has been demonstrated that the plasma wave...
When viewed from Earth, most of what we observe of a comet is dust. The influence of solar radiation...
Context. Theoretical predictions demonstrate that small (<0.1 μm) interstellar grains are mostly exc...
Context. The FIELDS instrument onboard Parker Solar Probe (PSP) observes dust impacts on the spacecr...
Context. The FIELDS instrument onboard Parker Solar Probe (PSP) observes dust impacts on the spacecr...
The mission Parker Solar Probe (PSP) provides a new opportunity to make in-situ measurements of dust...
The electric and magnetic field instrument suite FIELDS on board the NASA Parker Solar Probe and the...
International audienceOver the last two years, and six near-Sun encounter orbits, the Parker Solar P...
We review the current knowledge and understanding of dust in the inner solar system. The major sourc...
The Parker Solar Probe (PSP) mission by NASA and the Solar Orbiter (SolO) mission by ESA are two rec...
International audienceInterplanetary Dust Particles (IDPs) consist of the pummeled remnants of aster...
International audienceThis work examines the variation of interplanetary dust count rates and direct...
ESA’s Solar Orbiter spacecraft provides a new opportunity to investigate the inner heliosphere close...
Cosmic dust particles are small solid objects observed in the solar planetary system and in many ast...
The dynamics of dust particles in the solar system is dominated by solar gravity, by solar radiation...
During the Voyager 1 and 2 flybys of the outer planets it has been demonstrated that the plasma wave...
When viewed from Earth, most of what we observe of a comet is dust. The influence of solar radiation...
Context. Theoretical predictions demonstrate that small (<0.1 μm) interstellar grains are mostly exc...