Poorest countries experience earlier anthropogenic emergence of daily temperature extremes

Understanding how the emergence of the anthropogenic warming signal from the noise of internal variability translates to changes in extreme event occurrence is of crucial societal importance. By utilising simulations of cumulative carbon dioxide (CO _2 ) emissions and temperature changes from eleven...

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Published in:Environmental Research Letters
Main Authors: Luke J Harrington, David J Frame, Erich M Fischer, Ed Hawkins, Manoj Joshi, Chris D Jones
Format: Article
Language:English
Published: IOP Publishing 2016-01-01
Subjects:
Online Access:https://doi.org/10.1088/1748-9326/11/5/055007
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author Luke J Harrington
David J Frame
Erich M Fischer
Ed Hawkins
Manoj Joshi
Chris D Jones
author_facet Luke J Harrington
David J Frame
Erich M Fischer
Ed Hawkins
Manoj Joshi
Chris D Jones
author_sort Luke J Harrington
collection DOAJ
container_title Environmental Research Letters
description Understanding how the emergence of the anthropogenic warming signal from the noise of internal variability translates to changes in extreme event occurrence is of crucial societal importance. By utilising simulations of cumulative carbon dioxide (CO _2 ) emissions and temperature changes from eleven earth system models, we demonstrate that the inherently lower internal variability found at tropical latitudes results in large increases in the frequency of extreme daily temperatures (exceedances of the 99.9th percentile derived from pre-industrial climate simulations) occurring much earlier than for mid-to-high latitude regions. Most of the world’s poorest people live at low latitudes, when considering 2010 GDP-PPP per capita; conversely the wealthiest population quintile disproportionately inhabit more variable mid-latitude climates. Consequently, the fraction of the global population in the lowest socio-economic quintile is exposed to substantially more frequent daily temperature extremes after much lower increases in both mean global warming and cumulative CO _2 emissions.
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spelling doaj-art-324f4861d2a94de4b1b8fffc7ed9394c2025-08-28T15:28:39ZengIOP PublishingEnvironmental Research Letters1748-93262016-01-0111505500710.1088/1748-9326/11/5/055007Poorest countries experience earlier anthropogenic emergence of daily temperature extremesLuke J Harrington0https://orcid.org/0000-0002-1699-6119David J Frame1Erich M Fischer2https://orcid.org/0000-0003-1931-6737Ed Hawkins3Manoj Joshi4Chris D Jones5New Zealand Climate Change Research Institute, School of Geography, Environment and Earth Sciences, Victoria University of Wellington , Wellington 6012, New ZealandNew Zealand Climate Change Research Institute, School of Geography, Environment and Earth Sciences, Victoria University of Wellington , Wellington 6012, New Zealand; National Institute of Water and Atmospheric Research, Wellington 6021, New ZealandInstitute for Atmospheric and Climate Science, ETH Zürich, Universitätstrasse 16, CH-8092 Zürich, SwitzerlandNational Centre for Atmospheric Science, Department of Meteorology, University of Reading , Reading RG6 6BB, UKClimatic Research Unit, School of Environmental Sciences, University of East Anglia , Norwich, UKMet Office Hadley Centre, FitzRoy Road, Exeter EX1 3PB, UKUnderstanding how the emergence of the anthropogenic warming signal from the noise of internal variability translates to changes in extreme event occurrence is of crucial societal importance. By utilising simulations of cumulative carbon dioxide (CO _2 ) emissions and temperature changes from eleven earth system models, we demonstrate that the inherently lower internal variability found at tropical latitudes results in large increases in the frequency of extreme daily temperatures (exceedances of the 99.9th percentile derived from pre-industrial climate simulations) occurring much earlier than for mid-to-high latitude regions. Most of the world’s poorest people live at low latitudes, when considering 2010 GDP-PPP per capita; conversely the wealthiest population quintile disproportionately inhabit more variable mid-latitude climates. Consequently, the fraction of the global population in the lowest socio-economic quintile is exposed to substantially more frequent daily temperature extremes after much lower increases in both mean global warming and cumulative CO _2 emissions.https://doi.org/10.1088/1748-9326/11/5/055007emergenceextreme temperaturescumulative emissionspopulation exposureCMIP5open climate campaign
spellingShingle Luke J Harrington
David J Frame
Erich M Fischer
Ed Hawkins
Manoj Joshi
Chris D Jones
Poorest countries experience earlier anthropogenic emergence of daily temperature extremes
emergence
extreme temperatures
cumulative emissions
population exposure
CMIP5
open climate campaign
title Poorest countries experience earlier anthropogenic emergence of daily temperature extremes
title_full Poorest countries experience earlier anthropogenic emergence of daily temperature extremes
title_fullStr Poorest countries experience earlier anthropogenic emergence of daily temperature extremes
title_full_unstemmed Poorest countries experience earlier anthropogenic emergence of daily temperature extremes
title_short Poorest countries experience earlier anthropogenic emergence of daily temperature extremes
title_sort poorest countries experience earlier anthropogenic emergence of daily temperature extremes
topic emergence
extreme temperatures
cumulative emissions
population exposure
CMIP5
open climate campaign
url https://doi.org/10.1088/1748-9326/11/5/055007
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