The Last Interglacial (LIG, 129–116 thousand of years BP, ka) represents a test bed for climate model feedbacks in warmer-than-present high latitude regions. However, mainly because aligning different palaeoclimatic archives and from different parts of the world is not trivial, a spatio-temporal picture of LIG temperature changes is difficult to obtain. Here, we have selected 47 polar ice core and sub-polar marine sediment records and developed a strategy to align them onto the recent AICC2012 ice core chronology. We provide the first compilation of high-latitude temperature changes across the LIG associated with a coherent temporal framework built between ice core and marine sediment records. Our new data synthesis highlights non-synchr...
Recent data compilations of the early Last Interglacial period have indicated a bipolar temperature ...
Ice cores provide unique archives of past climate and environmental changes based only on physical p...
Ice cores provide unique archives of past climate and environmental changes based only on physical p...
AbstractThe Last Interglacial (LIG, 129–116 thousand of years BP, ka) represents a test bed for clim...
International audienceThe Last Interglacial (LIG, 129e116 thousand of years BP, ka) represents a tes...
The Last Interglacial (LIG, 129-116 thousand of years BP, ka) represents a test bed for climate mode...
We compiled ice and marine records of high-latitude temperature changes and placed them on a common ...
The Last Interglacial (LIG, ~129-116 thousand years Before Present, hereafter ka) represents an idea...
The Last Interglacial (LIG, ∼129-116 thousand years ago, ka) represents an excellent case study to i...
The Last Interglacial (LIG, ~129-116 thousand years Before Present, hereafter ka) represents an idea...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Although the Last Interglacial (LIG) is often considered as a possible analogue for future climate i...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Recent data compilations of the early Last Interglacial period have indicated a bipolar temperature ...
Ice cores provide unique archives of past climate and environmental changes based only on physical p...
Ice cores provide unique archives of past climate and environmental changes based only on physical p...
AbstractThe Last Interglacial (LIG, 129–116 thousand of years BP, ka) represents a test bed for clim...
International audienceThe Last Interglacial (LIG, 129e116 thousand of years BP, ka) represents a tes...
The Last Interglacial (LIG, 129-116 thousand of years BP, ka) represents a test bed for climate mode...
We compiled ice and marine records of high-latitude temperature changes and placed them on a common ...
The Last Interglacial (LIG, ~129-116 thousand years Before Present, hereafter ka) represents an idea...
The Last Interglacial (LIG, ∼129-116 thousand years ago, ka) represents an excellent case study to i...
The Last Interglacial (LIG, ~129-116 thousand years Before Present, hereafter ka) represents an idea...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Although the Last Interglacial (LIG) is often considered as a possible analogue for future climate i...
Though primarily driven by insolation changes associated with well-known variations in Earth's astro...
Recent data compilations of the early Last Interglacial period have indicated a bipolar temperature ...
Ice cores provide unique archives of past climate and environmental changes based only on physical p...
Ice cores provide unique archives of past climate and environmental changes based only on physical p...