Persistent Slabs
- Alpine
- Treeline
- Below treeline
- Likelihood
- Unlikely
- Size
- 2
Dense, 2-3 foot thick slabs overlie multiple weak layers (sugary facets, surface hoar, and crust + facet combinations) on many slopes, including sunnier aspects. The weak layers are worst and remain suspect on slopes facing the northern half of the compass (NW-N-NE-E).
You may or may not observe any obvious signs of instability, such as cracking or collapsing, before triggering a slide. Avoiding steep terrain where the problem exists is the only surefire way to take Persistent Slab problems off the table, and, unfortunately, the only way to know if these lingering instabilities exist is to dig into the snow. Identifying safe-to-ride slopes on the northern half of the compass is not easy right now.
Additional Discussion - Wind Slabs: Watch for dunes, waves, and textured surfaces to identify areas where the wind deposited snow in all exposed upper elevation and alpine terrain. Feel for stiff snow overlying weaker or softer snow; this snowpack setup can feel or sound "hollow" or "drummy". Smaller Wind Slab avalanches can trigger much larger Persistent Slab avalanches as they move downslope.
(3/6/2026)
Small natural avalanche on a NE slope of Copper Mountain (S Summit) that pulled out mid-slope.
Photo: Sawtooth Avalanche Center