In this, the final installment in a three-part series on the Thomson surface, we present simulated observations of coronal mass ejections (CMEs) observed by a hypothetical polarizing white light heliospheric imager. Thomson scattering yields a polarization signal that can be exploited to locate observed features in three dimensions relative to the Thomson surface. We consider how the appearance of the CME changes with the direction of trajectory, using simulations of a simple geometrical shape and also of a more realistic CME generated using the ENLIL model. We compare the appearance in both unpolarized B and polarized pB light, and show that there is a quantifiable difference in the measured brightness of a CME between unpolarized and pola...
We describe observations of the white-light structures in the low corona following the X8.2 flare SO...
We discuss features of coronal mass ejections (CMEs) that are specific to heliospheric observations ...
White-light Thomson scattering observations from the Solar Mass Ejection Imager (SMEI) have recorded...
The solar corona and heliosphere are visible via sunlight that is Thomson-scattered off free electro...
Aims. The aim of this work is to quantify the uncertainties in the three-dimensional (3D) reconstruc...
Aims. The aim of this work is to quantify the uncertainties in the three-dimensional (3D) reconstruc...
International audienceThe three-dimensional morphology and direction of propagation of coronal mass ...
Stereoscopic white-light imaging of a large portion of the inner heliosphere has been used to track ...
Stereoscopic white-light imaging of a large portion of the inner heliosphere has been used to track ...
Stereoscopic white-light imaging of a large portion of the inner heliosphere has been used to track ...
Context. Understanding the 3D structure of coronal mass ejections (CMEs) is crucial for understandin...
Context.Understanding the 3D structure of coronal mass ejections (CMEs) is crucial for understanding...
Metis, the space coronagraph on board the Solar Orbiter, offers us new capabilities for studying eru...
Context. Understanding the 3D structure of coronal mass ejections (CMEs) is crucial for understandin...
We discuss features of coronal mass ejections (CMEs) that are specific to heliospheric observations ...
We describe observations of the white-light structures in the low corona following the X8.2 flare SO...
We discuss features of coronal mass ejections (CMEs) that are specific to heliospheric observations ...
White-light Thomson scattering observations from the Solar Mass Ejection Imager (SMEI) have recorded...
The solar corona and heliosphere are visible via sunlight that is Thomson-scattered off free electro...
Aims. The aim of this work is to quantify the uncertainties in the three-dimensional (3D) reconstruc...
Aims. The aim of this work is to quantify the uncertainties in the three-dimensional (3D) reconstruc...
International audienceThe three-dimensional morphology and direction of propagation of coronal mass ...
Stereoscopic white-light imaging of a large portion of the inner heliosphere has been used to track ...
Stereoscopic white-light imaging of a large portion of the inner heliosphere has been used to track ...
Stereoscopic white-light imaging of a large portion of the inner heliosphere has been used to track ...
Context. Understanding the 3D structure of coronal mass ejections (CMEs) is crucial for understandin...
Context.Understanding the 3D structure of coronal mass ejections (CMEs) is crucial for understanding...
Metis, the space coronagraph on board the Solar Orbiter, offers us new capabilities for studying eru...
Context. Understanding the 3D structure of coronal mass ejections (CMEs) is crucial for understandin...
We discuss features of coronal mass ejections (CMEs) that are specific to heliospheric observations ...
We describe observations of the white-light structures in the low corona following the X8.2 flare SO...
We discuss features of coronal mass ejections (CMEs) that are specific to heliospheric observations ...
White-light Thomson scattering observations from the Solar Mass Ejection Imager (SMEI) have recorded...