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Article

Contribution of Leading Natural Climate Variability Modes to Winter SAT Changes in the Arctic in the Early 20th Century

by
Daria D. Bokuchava
1,*,
Vladimir A. Semenov
1,2,
Tatiana A. Aldonina
1,2,
Mirseid Akperov
1,2,3 and
Ekaterina Y. Shtol
1
1
Institute of Geography RAS, Staromonetny per. 29/4, 119017 Moscow, Russia
2
A.M. Obukhov Institute of Atmospheric Physics RAS, Pyzhevsky per., 3, 119017 Moscow, Russia
3
Moscow Institute of Physics and Technology, Institutskiy per., 9, 141701 Dolgoprudny, Russia
*
Author to whom correspondence should be addressed.
Atmosphere 2025, 16(12), 1391; https://doi.org/10.3390/atmos16121391
Submission received: 24 October 2025 / Revised: 3 December 2025 / Accepted: 5 December 2025 / Published: 9 December 2025
(This article belongs to the Section Climatology)

Abstract

The causes of Arctic surface air temperature rise and the corresponding sea ice decline in the early 20th century are still a matter of debate. One hypothesis, considering the major contribution of the internal variability to the early warming event, is the leading one. This study aims to assess the contributions of the Northern Hemisphere’s leading natural variability modes to winter temperature changes in the Arctic during 20th century. Two methodologies were compared to remove externally forced signals from Arctic SAT observations—linear detrending and subtracting the multi-model ensemble mean, thereby isolating internal variability. The study introduces a novel perspective on regional evaluation across four equal-area Arctic sectors (European, Asian, Pacific, and North Atlantic), uncovering a heterogeneous spatial pattern of the Arctic SAT modulation by climate indices. Statistical analysis reveals northern extratropical modes explain 66% (median) of total variance, with dominance of AMO index in HadCRUT5 detrended observations and only 30% with PDO index prominent in observations-CMIP6 residuals. It is revealed that forced-signal removal data outperforms the detrending procedure in isolating unforced internal dynamics. AMO’s susceptibility to external forcings like greenhouse gases/aerosols is also underscored by the results of the study. Future directions advocate dynamic approaches like large initial-condition ensembles prescribing sea surface temperature/sea ice or isolating modes for causal attribution beyond statistical links.
Keywords: arctic climate; surface temperature; internal variability; climate models; AMO; PDO arctic climate; surface temperature; internal variability; climate models; AMO; PDO
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MDPI and ACS Style

Bokuchava, D.D.; Semenov, V.A.; Aldonina, T.A.; Akperov, M.; Shtol, E.Y. Contribution of Leading Natural Climate Variability Modes to Winter SAT Changes in the Arctic in the Early 20th Century. Atmosphere 2025, 16, 1391. https://doi.org/10.3390/atmos16121391

AMA Style

Bokuchava DD, Semenov VA, Aldonina TA, Akperov M, Shtol EY. Contribution of Leading Natural Climate Variability Modes to Winter SAT Changes in the Arctic in the Early 20th Century. Atmosphere. 2025; 16(12):1391. https://doi.org/10.3390/atmos16121391

Chicago/Turabian Style

Bokuchava, Daria D., Vladimir A. Semenov, Tatiana A. Aldonina, Mirseid Akperov, and Ekaterina Y. Shtol. 2025. "Contribution of Leading Natural Climate Variability Modes to Winter SAT Changes in the Arctic in the Early 20th Century" Atmosphere 16, no. 12: 1391. https://doi.org/10.3390/atmos16121391

APA Style

Bokuchava, D. D., Semenov, V. A., Aldonina, T. A., Akperov, M., & Shtol, E. Y. (2025). Contribution of Leading Natural Climate Variability Modes to Winter SAT Changes in the Arctic in the Early 20th Century. Atmosphere, 16(12), 1391. https://doi.org/10.3390/atmos16121391

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