Articles | Volume 20, issue 9
https://doi.org/10.5194/tc-20-5453-2026
https://doi.org/10.5194/tc-20-5453-2026
Research article
 | 
23 Sep 2026
Research article |  | 23 Sep 2026

Polythermal conditions in small glaciers in the Swiss Alps

Janosch Beer, Mylène Jacquemart, Matthias Huss, Ilaria Santin, Gabriela Clara Racz, Christophe Ogier, Saskia Gindraux, Leo Hösli, Raphael Moser, James Irving, Mauro Fischer, and Daniel Farinotti

Related authors

Substantial accumulation rates on a glacier avalanche cone from time-lapse photogrammetry and field measurements
Marin Kneib, Patrick Wagnon, Laurent Arnaud, Louise Balmas, Olivier Laarman, Bruno Jourdain, Amaury Dehecq, Emmanuel Lemeur, Fanny Brun, Andrea Kneib-Walter, Ilaria Santin, Laurane Charrier, Thierry Faug, Giulia Mazzotti, Antoine Rabatel, Delphine Six, and Daniel Farinotti
The Cryosphere, 20, 5327–5344, https://doi.org/10.5194/tc-20-5327-2026,https://doi.org/10.5194/tc-20-5327-2026, 2026
Short summary
Wet snow avalanche preconditions from Sentinel-1 multi-track composites
Gwendolyn Dasser, Valentin T. Bickel, Marius Rüetschi, Mylène Jacquemart, Mathias Bavay, Elisabeth Hafner-Aeschbacher, Alec van Herwijnen, David Small, and Andrea Manconi
The Cryosphere, 20, 4811–4837, https://doi.org/10.5194/tc-20-4811-2026,https://doi.org/10.5194/tc-20-4811-2026, 2026
Short summary
Potential glacier contributions to the 2024 La Bérarde flood
Christophe Ogier, Mauro A. Werder, Olivier Gagliardini, Ilaria Santin, Raphael Moser, Romain Hugonnet, Antoine Blanc, and Daniel Farinotti
Nat. Hazards Earth Syst. Sci., 26, 3901–3917, https://doi.org/10.5194/nhess-26-3901-2026,https://doi.org/10.5194/nhess-26-3901-2026, 2026
Short summary
GlaDS-2: modeling subglacial drainage including ice uplift and free-surface flow in two dimensions
Sandra Wells, Ivan Utkin, Ian J. Hewitt, Daniel Farinotti, and Mauro A. Werder
EGUsphere, https://doi.org/10.5194/egusphere-2026-4310,https://doi.org/10.5194/egusphere-2026-4310, 2026
Short summary
Tree growth at the beginning of the Holocene at an elevation of 2150 m in the Engadin Valley, Switzerland
Christian Schlüchter, Leo Hösli, Kurt Nicolussi, Christoph Korte, and Irka Hajdas
E&G Quaternary Sci. J., 75, 163–167, https://doi.org/10.5194/egqsj-75-163-2026,https://doi.org/10.5194/egqsj-75-163-2026, 2026
Short summary

Cited articles

Agassiz, L.: Nouvelles études et expériences sur les glaciers actuels, V. Masson, Paris, 1847. a
Ambach, W. and Eisner, H.: Analysis of a 20 m. Firn Pit on the Kesselwandferner (Ötztal Alps), J. Glaciol., 6, 223–231, https://doi.org/10.3189/S0022143000019237, 1966. a
Beer, J.: Code for: Polythermal Conditions in Small Glaciers in the Swiss Alps, GitHub [code], https://github.com/sdrocer/polythermal_swiss_glaciers (last access: 22 September 2026), 2026a. a
Beer, J.: Code for: Polythermal conditions in small glaciers in the Swiss Alps (Version v1.0.0), Zenodo [code], https://doi.org/10.5281/zenodo.22834279, 2026b. a
Beer, J., Santin, I., and Ogier, C.: GPR Data for Beer et al. 2026: Radar Dataset of Glacier du Sex Rouge, Glacier de Tortin, Vadret dal Corvatsch, Alphubel South, Chessjengletscher, Hohsaasgletscher [data set], https://doi.org/10.3929/ethz-c-000799146, 2026. a
Download
Short summary
Small Alpine glaciers can exhibit a mix of cold and temperate ice, a polythermal structure, which can promote hazardous conditions. We drilled into six small Swiss glaciers and measured ice temperatures in boreholes. We found polythermal conditions in three of six sites and show that the thermal structure is linked to firn cover loss. Our results suggest that polythermal glaciers may be more common in the Alps than previously recognised.
Share