Show Citations Show BibTex

all: abrupt-4xCO2


Year

Author

Title

2022
Mackallah, C., Chamberlain, M. A., et al.
ACCESS datasets for CMIP6: methodology and idealised experiments
(Citation) (More Info) (Abstract) (BibTex)

2022
Qin, Yi, Zelinka, Mark D., et al.
On the Correspondence Between Atmosphere‐Only and Coupled Simulations for Radiative Feedbacks and Forcing From CO 2
(Citation) (More Info) (Abstract) (BibTex)

2021
Beverley, Jonathan D., Collins, Matthew, et al.
Future Changes to El Niño Teleconnections over the North Pacific and North America
(Citation) (More Info) (Abstract) (BibTex)

2021
McBride, Laura A., Hope, Austin P., et al.
Comparison of CMIP6 historical climate simulations and future projected warming to an empirical model of global climate
(Citation) (More Info) (Abstract) (BibTex)

2021
Nicholls, Zebedee, Lewis, Jared, et al.
Regionally aggregated, stitched and de‐drifted CMIP‐climate data, processed with netCDF‐SCM v2.0.0
(Citation) (More Info) (Abstract) (BibTex)

2021
Zhang, Jie, Wu, Tongwen, et al.
BCC-ESM1 Model Datasets for the CMIP6 Aerosol Chemistry Model Intercomparison Project (AerChemMIP)
(Citation) (More Info) (Abstract) (BibTex)

2021
Douville, Hervé, John, A.
Fast adjustment versus slow SST-mediated response of daily precipitation statistics to abrupt 4xCO2
(Citation) (More Info) (Abstract) (BibTex)

2021
Thornhill, Gillian, Collins, William, et al.
Climate-driven chemistry and aerosol feedbacks in CMIP6 Earth system models
(Citation) (More Info) (Abstract) (BibTex)

2020
van Noije, Twan, Bergman, Tommi, et al.
EC-Earth3-AerChem, a global climate model with interactive aerosolsand atmospheric chemistry participating in CMIP6
(Citation) (More Info) (Abstract) (BibTex)

2020
Douville, Hervé, Decharme, B., et al.
Drivers of the enhanced decline of land near-surface relative humidity to abrupt 4xCO2 in CNRM-CM6-1
(Citation) (More Info) (Abstract) (BibTex)

2020
Dunne, John P., Winton, Michael, et al.
Comparison of Equilibrium Climate Sensitivity Estimates From Slab Ocean, 150‐Year, and Longer Simulations
(Citation) (More Info) (Abstract) (BibTex)

2020
Shi, Xueli, Chen, Xiaolong, et al.
Climate Sensitivity and Feedbacks of BCC-CSM to Idealized CO2 Forcing from CMIP5 to CMIP6
(Citation) (More Info) (Abstract) (BibTex)

2020
Sherwood, S., Webb, M. J., et al.
An assessment of Earth's climate sensitivity using multiple lines of evidence
(Citation) (More Info) (Abstract) (BibTex)

2020
Grise, Kevin M., Davis, Sean M.
Hadley cell expansion in CMIP6 models
(Citation) (More Info) (Abstract) (BibTex)

2020
Tsutsui, Junichi
Diagnosing Transient Response to CO 2 Forcing in Coupled Atmosphere‐Ocean Model Experiments Using a Climate Model Emulator
(Citation) (More Info) (Abstract) (BibTex)

2020
Oudar, Thomas, Cattiaux, Julien, et al.
Robustness and drivers of the Northern Hemisphere extratropical atmospheric circulation response to a CO$$_2$$-induced warming in CNRM-CM6-1
(Citation) (More Info) (Abstract) (BibTex)

2019
Séférian, Roland, Nabat, Pierre, et al.
Evaluation of CNRM Earth System Model, CNRM‐ESM2‐1: Role of Earth System Processes in Present‐Day and Future Climate
(Citation) (More Info) (Abstract) (BibTex)

2018
Po-Chedley, Stephen, Armour, Kyle C., et al.
Sources of Intermodel Spread in the Lapse Rate and Water Vapor Feedbacks
(Citation) (More Info) (Abstract) (BibTex)

2016
DeAngelis, Anthony M., Qu, Xin, et al.
Importance of vegetation processes for model spread in the fast precipitation response to CO2 forcing
(Citation) (More Info) (Abstract) (BibTex)

2016
Pendergrass, Angeline G., Gerber, Edwin P.
The Rain Is Askew: Two Idealized Models Relating Vertical Velocity and Precipitation Distributions in a Warming World
(Citation) (More Info) (Abstract) (BibTex)

2016
Zelinka, Mark D., Zhou, Chen, et al.
Insights from a refined decomposition of cloud feedbacks
(Citation) (More Info) (Abstract) (BibTex)

2015
Ferraro A. J., Lambert F. H., et al.
Physical Mechanisms of Tropical Climate Feedbacks Investigated using Temperature and Moisture Trends
(Citation) (More Info) (Abstract) (BibTex)

2015
Qu X., Hall A., et al.
The strength of the tropical inversion and its response to climate change in 18 CMIP5 models
(Citation) (More Info) (Abstract) (BibTex)

2015
Frölicher T. L., Paynter D. J.
Extending the relationship between global warming and cumulative carbon emissions to multi-millennial timescales
(Citation) (More Info) (Abstract) (BibTex)

2015
Kamae Y., Ogura T., et al.
Robust cloud feedback over tropical land in a warming climate
(Citation) (More Info) (Abstract) (BibTex)

2015
Kamae Y., Ogura T., et al.
Robust cloud feedback over tropical land in a warming climate
(Citation) (More Info) (Abstract) (BibTex)

2015
Chung E., Soden B. J.
An assessment of methods for computing radiative forcing in climate models
(Citation) (More Info) (Abstract) (BibTex)

2015
Chung E., Soden B. J.
An Assessment of Direct Radiative Forcing, Radiative Adjustments, and Radiative Feedbacks in Coupled Ocean%u2013Atmosphere Models
(Citation) (More Info) (Abstract) (BibTex)

2015
Fläschner D., Mauritsen T., et al.
Understanding the inter-model spread in global-mean hydrological sensitivity
(Citation) (More Info) (Abstract) (BibTex)

2015
Fläschner D., Mauritsen T., et al.
Understanding the inter-model spread in global-mean hydrological sensitivity
(Citation) (More Info) (Abstract) (BibTex)

2015
DeAngelis A. M., Qu X., et al.
An observational radiative constraint on hydrologic cycle intensification
(Citation) (More Info) (Abstract) (BibTex)

2015
Hopcroft P. O., Valdes P. J.
How well do simulated last glacial maximum tropical temperatures constrain equilibrium climate sensitivity?
(Citation) (More Info) (Abstract) (BibTex)

2014
Donohoe, Aaron, Armour, Kyle C., et al.
Shortwave and longwave radiative contributions to global warming under increasing CO 2
(Citation) (More Info) (Abstract) (BibTex)

2014
Santer, Benjamin D., Bonfils, Céline, et al.
Volcanic contribution to decadal changes in tropospheric temperature
(Citation) (More Info) (Abstract) (BibTex)

2014
Grise K. M., Polvani L. M.
Southern Hemisphere cloud-dynamics biases in CMIP5 models and their implications for climate projections
(Citation) (More Info) (Abstract) (BibTex)

2014
Chadwick R. S., Good P., et al.
Surface warming patterns drive tropical rainfall pattern responses to CO2 forcing on all timescales
(Citation) (More Info) (Abstract) (BibTex)

2014
Kamae Y., Watanabe M., et al.
Summertime land-sea thermal contrast and atmospheric circulation over East Asia in a warming climate-Part II: Importance of CO2-induced continental warming
(Citation) (More Info) (Abstract) (BibTex)

2014
Sherwood S. C., Bony S., et al.
Spread in model climate sensitivity traced to atmospheric convective mixing
(Citation) (More Info) (Abstract) (BibTex)

2014
Grise K. M., Polvani L. M.
Is climate sensitivity related to dynamical sensitivity? A Southern Hemisphere perspective
(Citation) (More Info) (Abstract) (BibTex)

2014
Zhang M., Huang Y.
Radiative forcing of quadrupling CO2
(Citation) (More Info) (Abstract) (BibTex)

2014
Huang Y., Zhang M.
The implication of radiative forcing and feedback for meridional energy transport
(Citation) (More Info) (Abstract) (BibTex)

2014
Izumi K., Bartlein P. J., et al.
Energy-balance mechanisms underlying consistent large-scale temperature responses in warm and cold climates
(Citation) (More Info) (Abstract) (BibTex)

2014
Thorpe L., Andrews T.
The physical drivers of historical and 21st century global precipitation changes
(Citation) (More Info) (Abstract) (BibTex)

2014
Irvine P. J., Boucher O., et al.
Key factors governing uncertainty in the response to sunshade geoengineering from a comparison of the GeoMIP ensemble and a perturbed parameter ensemble
(Citation) (More Info) (Abstract) (BibTex)

2014
Huneeus N., Boucher O., et al.
Forcings and feedbacks in the GeoMIP ensemble for a reduction in solar irradiance and increase in CO2
(Citation) (More Info) (Abstract) (BibTex)

2014
Curry C. L., Sillmann J., et al.
A multi-model examination of climate extremes in an idealized geoengineering experiment
(Citation) (More Info) (Abstract) (BibTex)

2014
Moore J. C., Rinke A., et al.
Arctic sea ice and atmospheric circulation under the GeoMIP G1 scenario
(Citation) (More Info) (Abstract) (BibTex)

2014
Kravitz B., MacMartin D. G., et al.
A multi-model assessment of regional climate disparities caused by solar geoengineering
(Citation) (More Info) (Abstract) (BibTex)

2014
Kostov Y., Armour K. C., et al.
Impact of the Atlantic meridional overturning circulation on ocean heat storage and transient climate change
(Citation) (More Info) (Abstract) (BibTex)

2014
Pithan F., Mauritsen T.
Arctic amplification dominated by temperature feedbacks in contemporary climate models
(Citation) (More Info) (Abstract) (BibTex)

2014
Hourdin F., Grandpeix J., et al.
LMDZ5B: the atmospheric component of the IPSL climate model with revisited parameterizations for clouds and convection
(Citation) (More Info) (Abstract) (BibTex)

2014
Gordon N. D., Klein S. A.
Low-cloud optical depth feedback in climate models
(Citation) (More Info) (Abstract) (BibTex)

2014
Grise K. M., Polvani L. M.
The response of midlatitude jets to increased CO2: Distinguishing the roles of sea surface temperature and direct radiative forcing
(Citation) (More Info) (Abstract) (BibTex)

2013
Long D. J., Collins M.
Quantifying global climate feedbacks, responses and forcing under abrupt and gradual CO2 forcing
(Citation) (More Info) (Abstract) (BibTex)

2013
Rojas M.
Sensitivity of Southern Hemisphere circulation to LGM and 4×CO2 climates
(Citation) (More Info) (Abstract) (BibTex)

2013
Block K., Mauritsen T.
Forcing and Feedback in the MPI-ESM-LR coupled model under abruptly quadrupled CO2
(Citation) (More Info) (Abstract) (BibTex)

2013
Stevens B., Giorgetta M., et al.
Atmospheric component of the MPI-M Earth System Model: ECHAM6
(Citation) (More Info) (Abstract) (BibTex)

2013
Kravitz B., Caldeira K., et al.
Climate model response from the Geoengineering Model Intercomparison Project (GeoMIP)
(Citation) (More Info) (Abstract) (BibTex)

2013
Kravitz B., Forster P. M., et al.
Sea spray geoengineering experiments in the Geoengineering Model Intercomparison Project (GeoMIP): Experimental design and preliminary results
(Citation) (More Info) (Abstract) (BibTex)

2013
Tilmes S., Fasullo J., et al.
The hydrological impact of geoengineering in the Geoengineering Model Intercomparison Project (GeoMIP)
(Citation) (More Info) (Abstract) (BibTex)

2013
Kravitz B., Rasch P. J., et al.
An energetic perspective on hydrological cycle changes in the Geoengineering Model Intercomparison Project (GeoMIP)
(Citation) (More Info) (Abstract) (BibTex)

2013
Giorgetta M. A., Jungclaus J., et al.
Climate and carbon cycle changes from 1850 to 2100 in MPI-ESM simulations for the Coupled Model Intercomparison Project phase 5
(Citation) (More Info) (Abstract) (BibTex)

2013
Meraner K., Mauritsen T., et al.
Robust increase in equilibrium climate sensitivity under global warming
(Citation) (More Info) (Abstract) (BibTex)

2013
Marsland S. J., Bi D., et al.
Evaluation of ACCESS Climate Model ocean diagnostics in CMIP5 simulations
(Citation) (More Info) (Abstract) (BibTex)

2013
Li G., Harrison S. P., et al.
Precipitation scaling with temperature in warm and cold climates: an analysis of CMIP5 simulations.
(Citation) (More Info) (Abstract) (BibTex)

2013
Izumi K., Bartlein P. J., et al.
Consistent behaviour of the climate system in response to past and future forcing.
(Citation) (More Info) (Abstract) (BibTex)

2013
vial j., Dufresne J., et al.
On the interpretation of inter-model spread in CMIP5 climate sensitivity estimates
(Citation) (More Info) (Abstract) (BibTex)

2013
Dufresne J., Foujols M., et al.
Climate change projections using the IPSL-CM5 Earth System Model: from CMIP3 to CMIP5
(Citation) (More Info) (Abstract) (BibTex)

2013
Bony S., Bellon G., et al.
Robust direct effect of carbon dioxide on tropical circulation and regional precipitation
(Citation) (More Info) (Abstract) (BibTex)

2013
Kamae Y., Watanabe M.
Tropospheric adjustment to increasing CO2: its timescale and the role of land-sea contrast
(Citation) (More Info) (Abstract) (BibTex)

2012
Andrews T., Gregory J. M., et al.
Forcing, feedbacks and climate sensitivity in CMIP5 coupled atmosphere-ocean climate models
(Citation) (More Info) (Abstract) (BibTex)

2012
Schmidt H., Alterskjær, K., et al.
Solar irradiance reduction to counteract radiative forcing from a quadrupling of CO2: climate responses simulated by four earth system models
(Citation) (More Info) (Abstract) (BibTex)

2012
lahellec a., Dufresne J.
A Formal Analysis of the Feedback Concept in Climate Models: exclusive and inclusive feedback analyses
(Citation) (More Info) (Abstract) (BibTex)

2012
Iversen T., Bentsen M., et al.
The Norwegian Earth System Model, NorESM1-M. Part 2: Climate Response and Scenario Projections
(Citation) (More Info) (Abstract) (BibTex)

2012
Jeffrey S. J., Rotstayn L. D., et al.
Australia's CMIP5 submission using the CSIRO Mk3.6 model
(Citation) (More Info) (Abstract) (BibTex)

2012
Zelinka M. D., Klein S. A., et al.
Contributions of Different Cloud Types to Feedbacks and Rapid Adjustments in CMIP5
(Citation) (More Info) (Abstract) (BibTex)

2012
Geoffroy O., Saint-Martin D., et al.
Transient climate response in a two-layer energy-balance model. Part II: representation of the efficacy of deep-ocean heat uptake and validation for CMIP5 AOGCMs.
(Citation) (More Info) (Abstract) (BibTex)

2012
Geoffroy O., Saint-Martin D., et al.
Transient climate response in a two-layer energy-balance model. Part I: analytical solution and parameter calibration using CMIP5 AOGCM experiments.
(Citation) (More Info) (Abstract) (BibTex)

2012
Myhrvold N., Caldeira K.
Time scale of thermal response of an abrupt change in atmospheric CO2 content in CMIP5 simulations
(Citation) (More Info) (Abstract) (BibTex)

2012
Watanabe S., Kawatani Y.
Sensitivity of the QBO to mean tropical upwelling under a changing climate simulated with an Earth system model
(Citation) (More Info) (Abstract) (BibTex)