International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by measuring the composition of air trapped in ice cores from Antarctica. So far, the Antarctic Vostok and EPICA Dome C ice cores have provided a composite record of atmospheric carbon dioxide levels over the past 650,000 years. Here we present results of the lowest 200 m of the Dome C ice core, extending the record of atmospheric carbon dioxide concentration by two complete glacial cycles to 800,000 yr before present. From previously published data and the present work, we find that atmospheric carbon dioxide is strongly correlated with Antarctic temperature throughout eight glacial cycles but with significantly lower concentrations between 65...
We report a decadally resolved record of atmospheric CO 2 concentration for the last 1000 years, obt...
A high-resolution record of the atmospheric CO2 concentration from 60 to 20 thousand years before pr...
The analysis of air in polar ice cores revealed 30% lower CO2 values during glacial periods than dur...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
Changes in past atmospheric carbon dioxide concentrations can be determined by measuring the composi...
A record of atmospheric carbon dioxide (CO2) concentrations measured on the EPICA (European Project ...
Ice cores provide the only direct way of determining past concentrations of atmospheric CO2. In the ...
A high-resolution record of the atmospheric CO2 concentration from 60 to 20 thousand years before pr...
We present measurements of the stable carbon isotope ratio in air extracted from Antarctic ice core ...
We report a decadally resolved record of atmospheric CO2 concentration for the last 1000 years, obta...
We report a decadally resolved record of atmospheric CO 2 concentration for the last 1000 years, obt...
A high-resolution record of the atmospheric CO2 concentration from 60 to 20 thousand years before pr...
The analysis of air in polar ice cores revealed 30% lower CO2 values during glacial periods than dur...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
International audienceChanges in past atmospheric carbon dioxide concentrations can be determined by...
Changes in past atmospheric carbon dioxide concentrations can be determined by measuring the composi...
A record of atmospheric carbon dioxide (CO2) concentrations measured on the EPICA (European Project ...
Ice cores provide the only direct way of determining past concentrations of atmospheric CO2. In the ...
A high-resolution record of the atmospheric CO2 concentration from 60 to 20 thousand years before pr...
We present measurements of the stable carbon isotope ratio in air extracted from Antarctic ice core ...
We report a decadally resolved record of atmospheric CO2 concentration for the last 1000 years, obta...
We report a decadally resolved record of atmospheric CO 2 concentration for the last 1000 years, obt...
A high-resolution record of the atmospheric CO2 concentration from 60 to 20 thousand years before pr...
The analysis of air in polar ice cores revealed 30% lower CO2 values during glacial periods than dur...