Rare events algorithm study of extreme double jet summers and their connection to heatwaves over the Northern Hemisphere

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Main Authors: Mascolo, Valeria, Ragone, Francesco, Harnik, Nili, Bouchet, Freddy
Format: Preprint
Published: 2025
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author Mascolo, Valeria
Ragone, Francesco
Harnik, Nili
Bouchet, Freddy
author_facet Mascolo, Valeria
Ragone, Francesco
Harnik, Nili
Bouchet, Freddy
contents Several large scale circulation patterns have been identified in relation to extreme Northern Hemisphere summer heatwaves. Three main ones are a double jet over Eurasia, a positive phase of the summer northern annular mode, and a quasi-wave-3 geopotential height anomaly. While there is some evidence suggesting these patterns are related to each other, the explicit nature of their relation, as well as the explicit mechanisms by which they are related to extreme heatwaves is still not known. The double jet structure has gained attention recently due to evidence that its persistence has been increasing, possibly explaining the rise in the number of extreme heatwaves over Europe. In this paper we study the occurrence and persistence of double jet states in ERA5 and in stationary simulations with the CESM1.2 model, using an index which measures the degree of jet separation. Additionally, we perform simulations with CESM1.2 coupled to a rare event algorithm in order to improve the statistics of rare summer-long double jet states. We find that extreme double jet states are characterised by three centers of extreme high surface temperature and 500hPa geopotential height anomalies, alongside a strong low pressure over the Arctic. The geopotential height anomaly pattern is consistent with both a positive Northern Annular Mode (NAM) and quasi-wave-3 patterns found in the literature. Moreover, we find a large percentage of co-occurrence of heatwaves at these centers, and a double jet state, with the percentage increasing with the duration of the double jet state.
format Preprint
id arxiv_https___arxiv_org_abs_2507_13101
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Rare events algorithm study of extreme double jet summers and their connection to heatwaves over the Northern Hemisphere
Mascolo, Valeria
Ragone, Francesco
Harnik, Nili
Bouchet, Freddy
Atmospheric and Oceanic Physics
Several large scale circulation patterns have been identified in relation to extreme Northern Hemisphere summer heatwaves. Three main ones are a double jet over Eurasia, a positive phase of the summer northern annular mode, and a quasi-wave-3 geopotential height anomaly. While there is some evidence suggesting these patterns are related to each other, the explicit nature of their relation, as well as the explicit mechanisms by which they are related to extreme heatwaves is still not known. The double jet structure has gained attention recently due to evidence that its persistence has been increasing, possibly explaining the rise in the number of extreme heatwaves over Europe. In this paper we study the occurrence and persistence of double jet states in ERA5 and in stationary simulations with the CESM1.2 model, using an index which measures the degree of jet separation. Additionally, we perform simulations with CESM1.2 coupled to a rare event algorithm in order to improve the statistics of rare summer-long double jet states. We find that extreme double jet states are characterised by three centers of extreme high surface temperature and 500hPa geopotential height anomalies, alongside a strong low pressure over the Arctic. The geopotential height anomaly pattern is consistent with both a positive Northern Annular Mode (NAM) and quasi-wave-3 patterns found in the literature. Moreover, we find a large percentage of co-occurrence of heatwaves at these centers, and a double jet state, with the percentage increasing with the duration of the double jet state.
title Rare events algorithm study of extreme double jet summers and their connection to heatwaves over the Northern Hemisphere
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2507.13101