With CO2 concentrations similar to today (410 ppm), the Pliocene Epoch offers insights into climate changes under a moderately warmer world. Previous work suggested a low zonal sea surface temperature (SST) gradient in the tropical Pacific during the Pliocene, the so‐called “permanent El Niño.” Here, we recalculate SSTs using the alkenone proxy and find moderate reductions in both the zonal and meridional SST gradients during the mid‐Piacenzian warm period. These reductions are captured by coupled climate model simulations of the Pliocene, especially those that simulate weaker Walker circulation. We also produce a spatial reconstruction of mid‐Piacenzian warm period Pacific SSTs that closely resembles both Pliocene and future, low‐emissions...
The mid-Pliocene warm period (3.264–3.025 Ma) is the most recent geological period during which atmo...
The Pliocene Model Intercomparison Project is the first coordinated climate model comparison for a w...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
With CO2 concentrations similar to today (410 ppm), the Pliocene Epoch offers insights into climate ...
About five to four million years ago, in the early Pliocene epoch, Earth had a warm, temperate clima...
About five to four million years ago, in the early Pliocene epoch, Earth had a warm, temperate clima...
The Pliocene Epoch, 5.33–2.58 million years ago (Ma), was a generally warmer and wetter interval wit...
It has been suggested that a "permanent" El Niño climate state has existed in the warm Pliocene. One...
Traditional reconstructions of sea-surface temperatures (SSTs) produced by the Pliocene Research Int...
The Pliocene epoch has great potential to improve our understanding of the long-term climatic and en...
Cenozoic climate changes have been linked to tectonic activity and variations in atmospheric CO2 con...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
Comparing simulations of key warm periods in Earth history with contemporaneous geological proxy dat...
The mid-Pliocene warm period (3.264–3.025 Ma) is the most recent geological period during which atmo...
The Pliocene Model Intercomparison Project is the first coordinated climate model comparison for a w...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
With CO2 concentrations similar to today (410 ppm), the Pliocene Epoch offers insights into climate ...
About five to four million years ago, in the early Pliocene epoch, Earth had a warm, temperate clima...
About five to four million years ago, in the early Pliocene epoch, Earth had a warm, temperate clima...
The Pliocene Epoch, 5.33–2.58 million years ago (Ma), was a generally warmer and wetter interval wit...
It has been suggested that a "permanent" El Niño climate state has existed in the warm Pliocene. One...
Traditional reconstructions of sea-surface temperatures (SSTs) produced by the Pliocene Research Int...
The Pliocene epoch has great potential to improve our understanding of the long-term climatic and en...
Cenozoic climate changes have been linked to tectonic activity and variations in atmospheric CO2 con...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...
Comparing simulations of key warm periods in Earth history with contemporaneous geological proxy dat...
The mid-Pliocene warm period (3.264–3.025 Ma) is the most recent geological period during which atmo...
The Pliocene Model Intercomparison Project is the first coordinated climate model comparison for a w...
The mid-Pliocene warm period (3.264-3.025Ma) is the most recent geological period during which atmos...