A numerical solution for the multiple scattering of light in spherical axisymmetric geometry is used to simulate observations of a model comet atmosphere as it would be seen by a near-flying satellite or by general wide-angle imaging techniques that might resolve the nucleus. We consider a spherically symmetric dust distribution, an axisymmetric dust jet, and a hollow cone of dust about the subsolar point. We calculate the specific intensity of both single- and multiply scattered light. Nucleus visibility and overall coma appearance is examined for varying phase angle. The appearance of the hollow cone is found to be especially sensitive to viewing geometry; at a phase angle of 90[deg] it bears a strong resemblance to the "northern area of ...
We use remote light scattering observations to tentatively infer the physical properties of the part...
The first imaging results from the Halley Multicolour Camera during the Giotto fly-by of comet Halle...
The Optical, Spectroscopic, and Infrared Remote Imaging System (OSIRIS) onboard the European Space A...
A numerical study of the anisotropic multiple scattering of light in a cometary atmosphere is perfor...
We have developed a numerical solution for the anisotropic multiple scattering of light in a cometar...
We have developed a numerical solution for the anisotropic multiple scattering of light in a cometar...
We define a procedure which allows estimation of the optical thickness of a cometary dust coma and t...
To interpret the physical properties of cometary and Interplanetary Dust Cloud (IDC) particles, we u...
International audienceOn 1992 July 10 the European Space Agency's spaceprobe Giotto passed the nucle...
Dust particles leaving the comet nucleus surface are entrained by the gas within the first few nucle...
The feasibility was investigated of obtaining optical images of a cometary nucleus via a flyby of Co...
On 1992 July 10 the European Space Agency's spaceprobe Giotto passed the nucleus of the comparativel...
The distribution of dust-scattered intensity in Halley's inner coma is measured with the Vega three-...
Context.Optical characterization of dust particles in cometary comae is based on a comparison betwee...
This paper describes the first computations of dust distributions in the vicinity of an active comet...
We use remote light scattering observations to tentatively infer the physical properties of the part...
The first imaging results from the Halley Multicolour Camera during the Giotto fly-by of comet Halle...
The Optical, Spectroscopic, and Infrared Remote Imaging System (OSIRIS) onboard the European Space A...
A numerical study of the anisotropic multiple scattering of light in a cometary atmosphere is perfor...
We have developed a numerical solution for the anisotropic multiple scattering of light in a cometar...
We have developed a numerical solution for the anisotropic multiple scattering of light in a cometar...
We define a procedure which allows estimation of the optical thickness of a cometary dust coma and t...
To interpret the physical properties of cometary and Interplanetary Dust Cloud (IDC) particles, we u...
International audienceOn 1992 July 10 the European Space Agency's spaceprobe Giotto passed the nucle...
Dust particles leaving the comet nucleus surface are entrained by the gas within the first few nucle...
The feasibility was investigated of obtaining optical images of a cometary nucleus via a flyby of Co...
On 1992 July 10 the European Space Agency's spaceprobe Giotto passed the nucleus of the comparativel...
The distribution of dust-scattered intensity in Halley's inner coma is measured with the Vega three-...
Context.Optical characterization of dust particles in cometary comae is based on a comparison betwee...
This paper describes the first computations of dust distributions in the vicinity of an active comet...
We use remote light scattering observations to tentatively infer the physical properties of the part...
The first imaging results from the Halley Multicolour Camera during the Giotto fly-by of comet Halle...
The Optical, Spectroscopic, and Infrared Remote Imaging System (OSIRIS) onboard the European Space A...