The dynamic mass loss of ice sheets constitutes one of the biggest uncertainties in projections of ice-sheet evolution. One central, understudied aspect of ice flow is how the bulk orientation of the crystal orientation fabric translates to the mechanical anisotropy of ice. Here we show the spatial distribution of the depth-averaged horizontal anisotropy and corresponding directional flow-enhancement factors covering a large area of the Northeast Greenland Ice Stream onset. Our results are based on airborne and ground-based radar surveys, ice-core observations, and numerical ice-flow modelling. They show a strong spatial variability of the horizontal anisotropy and a rapid crystal reorganisation on the order of hundreds of years coinciding ...
Ice crystals are mechanically and dielectrically anisotropic. They progressively align under cumulat...
The study of the distribution of crystallographic orientations (i.e., the fabric) along ice cores pr...
Ice streams provide major drainage pathways for the Antarctic ice sheet. The stress distribution an...
The dynamic mass loss of ice sheets constitutes one of the biggest uncertainties in projections of i...
Anisotropic crystal fabrics in ice sheets develop as a consequence of deformation and hence record i...
Anisotropic crystal fabrics in ice sheets develop as a consequence of deformation and hence record i...
Deformation processes dominated by dislocation activity within ice sheets take place on small scale:...
Crystal Orientation Fabric (COF) of c-axes in ice cores reveals information about deformation within...
Global sea level has been rising over the last century, and one of the contributors and the main sou...
Streaming ice accounts for a major fraction of global ice flux, yet we cannot yet fully explain the ...
The increasing catalogue of high-quality ice-penetrating radar data provides a unique insight in the...
We use polarimetric radar sounding to investigate ice crystal orientation fabric and its impact on i...
Preferred crystal orientation fabrics (COFs) within an ice sheet or glacier are typically found from...
The North East Greenland Ice Stream (NEGIS) is delineated by well-defined shear margins, which are e...
Flow behavior of large ice sheets is affected mainly by c-axis orientation fabric, and the fabric fo...
Ice crystals are mechanically and dielectrically anisotropic. They progressively align under cumulat...
The study of the distribution of crystallographic orientations (i.e., the fabric) along ice cores pr...
Ice streams provide major drainage pathways for the Antarctic ice sheet. The stress distribution an...
The dynamic mass loss of ice sheets constitutes one of the biggest uncertainties in projections of i...
Anisotropic crystal fabrics in ice sheets develop as a consequence of deformation and hence record i...
Anisotropic crystal fabrics in ice sheets develop as a consequence of deformation and hence record i...
Deformation processes dominated by dislocation activity within ice sheets take place on small scale:...
Crystal Orientation Fabric (COF) of c-axes in ice cores reveals information about deformation within...
Global sea level has been rising over the last century, and one of the contributors and the main sou...
Streaming ice accounts for a major fraction of global ice flux, yet we cannot yet fully explain the ...
The increasing catalogue of high-quality ice-penetrating radar data provides a unique insight in the...
We use polarimetric radar sounding to investigate ice crystal orientation fabric and its impact on i...
Preferred crystal orientation fabrics (COFs) within an ice sheet or glacier are typically found from...
The North East Greenland Ice Stream (NEGIS) is delineated by well-defined shear margins, which are e...
Flow behavior of large ice sheets is affected mainly by c-axis orientation fabric, and the fabric fo...
Ice crystals are mechanically and dielectrically anisotropic. They progressively align under cumulat...
The study of the distribution of crystallographic orientations (i.e., the fabric) along ice cores pr...
Ice streams provide major drainage pathways for the Antarctic ice sheet. The stress distribution an...