Exploring the mode and tempo of millennial-scale climate variability under evolving boundary conditions can provide insights into tipping points in different parts of the Earth system, and can facilitate a more detailed understanding of climate teleconnections and phase relationships between different Earth system components. Here we use fossil diatom and stable carbon and oxygen isotope analysis of lake sediment deposits (core I-284) from the Ioannina basin, NW Greece, to explore in further detail millennial-scale climate instability in southern Europe during Marine Isotope Stage 6 (MIS 6; ca. 185‒130 ka). This interval correlates with the Vlasian Stage in Greece and the Late Saalian Substage in northern Europe, which were both characteris...
To achieve deeper understanding of climate variability during the last millennium in SE Europe, we r...
In order to better understand interglacial climate variability within the 41 kyr world, we produced ...
To gain insights into the mechanisms of abrupt climate change within interglacials, we have examined...
Exploring the mode and tempo of millennial-scale climate variability under evolving boundary conditi...
Unlike the most recent deglaciation, the regional expression of climate changes during the penultima...
During the penultimate climatic cycle (marine isotope stages [MIS] 6 and 7) high orbital eccentricit...
High-resolution records of Mediterranean and North Atlantic deep-sea sediments indicate that rapid c...
Although millennial-scale climate variability (<10 ka) has been well studied during the last glacial...
Long (multi-millennial), continuous lake pollen records have provided insights into terrestrial ecos...
To better understand climate variability during Marine Isotope Stage (MIS) 11, we here present a new...
A broad correspondence between long pollen sequences and the deep-sea oxygen isotope record has been...
We use planktonic foraminiferal, Globigerinoides ruber, oxygen isotope analyses (δ18O) to complete a...
Earth’s climate during the Quaternary period (~ 2.6 MA to present) has been characterized by fluctua...
Examination of an important new 319m core of lake sediment recovered from Ioannina in NW Greece has ...
Although millennial-scale climate variability (<10 ka) has been well studied during the last glacial...
To achieve deeper understanding of climate variability during the last millennium in SE Europe, we r...
In order to better understand interglacial climate variability within the 41 kyr world, we produced ...
To gain insights into the mechanisms of abrupt climate change within interglacials, we have examined...
Exploring the mode and tempo of millennial-scale climate variability under evolving boundary conditi...
Unlike the most recent deglaciation, the regional expression of climate changes during the penultima...
During the penultimate climatic cycle (marine isotope stages [MIS] 6 and 7) high orbital eccentricit...
High-resolution records of Mediterranean and North Atlantic deep-sea sediments indicate that rapid c...
Although millennial-scale climate variability (<10 ka) has been well studied during the last glacial...
Long (multi-millennial), continuous lake pollen records have provided insights into terrestrial ecos...
To better understand climate variability during Marine Isotope Stage (MIS) 11, we here present a new...
A broad correspondence between long pollen sequences and the deep-sea oxygen isotope record has been...
We use planktonic foraminiferal, Globigerinoides ruber, oxygen isotope analyses (δ18O) to complete a...
Earth’s climate during the Quaternary period (~ 2.6 MA to present) has been characterized by fluctua...
Examination of an important new 319m core of lake sediment recovered from Ioannina in NW Greece has ...
Although millennial-scale climate variability (<10 ka) has been well studied during the last glacial...
To achieve deeper understanding of climate variability during the last millennium in SE Europe, we r...
In order to better understand interglacial climate variability within the 41 kyr world, we produced ...
To gain insights into the mechanisms of abrupt climate change within interglacials, we have examined...