Signatures of the sub-Rayleigh to supershear fracture transition in snow avalanche experiments

B Bastian Bergfeld J Johan Gaume G Gregoire Bobillier A Alexandre Pellet J Jürg Schweizer A Alec Van Herwijnen

Abstract

Abstract Snow slab avalanches occur when a crack propagates within a highly porous weak snow layer buried beneath a cohesive snow slab. Here, we report direct observations of a supershear event in snow fracture experiments following the spontaneous transition from sub-Rayleigh to intersonic crack propagation. The experiments involve artificially triggered avalanches on a small slope with a natural snowpack, captured with high-speed cameras and analyzed using digital image correlation. Deformation fields reveal distinct signatures: slope-normal collapse of the weak layer and slab flexure drive sub-Rayleigh propagation, while supershear fracture is related to slope-parallel deformation and slab tension. These results are further reinforced by numerical simulations that replicate the experiment and provide strong supporting evidence that the Burridge-Andrews mechanism governs the transition to supershear propagation. Analogous to supershear strike-slip earthquakes linked with substantial magnitudes, our findings suggest that supershear avalanches relate to widespread crack propagation and large avalanche dimensions, holding significant implications for risk mitigation strategies.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 16, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (6)

B

Bastian Bergfeld

J

Johan Gaume

G

Gregoire Bobillier

A

Alexandre Pellet

J

Jürg Schweizer

A

Alec Van Herwijnen