Deformation of ice in continental sized ice sheets determines the flow behavior of ice towards the sea. Basal dislocation glide is assumed to be the dominant deformation mechanism in the creep deformation of natural ice, but non-basal glide is active as well. Knowledge of what types of deformation mechanisms are active in polar ice is critical in predicting the response of ice sheets in future warmer climates and its contribution to sea level rise, because the activity of deformation mechanisms depends critically on deformation conditions (such as temperature) as well as on the material properties (such as grain size). One of the methods to study the deformation mechanisms in natur...
The flow of ice depends on the properties of the aggregate of individual ice crystals, such as grain...
Mechanical properties and deformation behaviour of ice in the huge polar ice masses control the inte...
In this work, we present first results of high-resolution EBSD for ice with a spatial resolution dow...
To determine active deformation mechanisms in polar ice. We use LM and Electron BackScattered Diffra...
Ice has a very high plastic anisotropy with easy dislocation glide on basal planes while glide on no...
To improve our understanding of dynamical processes in polar ice sheets by microstructural analysis ...
Understanding the flow of ice is essential to predict the contribution of the polar ice sheets to gl...
Mass loss from ice sheets contributes to global sea level rise, and accelerated ice flow to the ocea...
Understanding the flow of ice is essential to predict the contribution of the polar ice sheets to gl...
Understanding the flow of ice is essential to predict the contribution of the polar ice sheets to gl...
International audiencePrediction of ice mass flow and associated dynamics is pivotal at a time of cl...
The flow of ice depends on the properties of the aggregate of individual ice crystals, such as grain...
The flow of ice depends on the properties of the aggregate of individual ice crystals, such as grain...
Mechanical properties and deformation behaviour of ice in the huge polar ice masses control the inte...
In this work, we present first results of high-resolution EBSD for ice with a spatial resolution dow...
To determine active deformation mechanisms in polar ice. We use LM and Electron BackScattered Diffra...
Ice has a very high plastic anisotropy with easy dislocation glide on basal planes while glide on no...
To improve our understanding of dynamical processes in polar ice sheets by microstructural analysis ...
Understanding the flow of ice is essential to predict the contribution of the polar ice sheets to gl...
Mass loss from ice sheets contributes to global sea level rise, and accelerated ice flow to the ocea...
Understanding the flow of ice is essential to predict the contribution of the polar ice sheets to gl...
Understanding the flow of ice is essential to predict the contribution of the polar ice sheets to gl...
International audiencePrediction of ice mass flow and associated dynamics is pivotal at a time of cl...
The flow of ice depends on the properties of the aggregate of individual ice crystals, such as grain...
The flow of ice depends on the properties of the aggregate of individual ice crystals, such as grain...
Mechanical properties and deformation behaviour of ice in the huge polar ice masses control the inte...
In this work, we present first results of high-resolution EBSD for ice with a spatial resolution dow...