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Sensitivity of Antarctic ice to climate change sharply increased after Ice Age shift 1 million years ago

A new study reveals that the Antarctic ice sheet responded sharply to climate change following a major shift in Earth's ice age cycles. The simulation found that below a critical atmospheric CO2 level, the amplitude of Antarctic ice variations increases in response to changes in temperatures.

SourceInstitute for Basic Science·JournalNature Geoscience·TypeComputational simulation/modeling·DateMay 28, 2026

Simulations suggest Greenland ice sheet variability shifted from precession to obliquity dominance in the Pliocene Pleistocene transition

Simulations suggest Greenland ice sheet changed in response to atmospheric CO2 scenarios and orbital forcing, with increased dynamical instability after expansion. The results imply that other factors, such as Antarctic ice changes and ocean processes, are needed to fully explain the persistence of certain climate cycles.

SourceScience China Press·JournalScience China Earth Sciences·DateApr 15, 2026

Ancient Antarctic ice cycles impacted ocean productivity thousands of miles away

Researchers found that the 40,000-year obliquity cycle influenced ocean productivity in subtropical latitudes about 34 million years ago. The study used chemical signals preserved in ocean sediment to reconstruct past biological productivity and showed a strong influence of the Antarctic ice sheet on subtropical marine ecosystems.

SourceUniversity of Wisconsin-Madison·JournalProceedings of the National Academy of Sciences·TypeObservational study·DateMar 23, 2026

Antarctica has lost 10 times the size of Greater Los Angeles in ice over 30 years

A 30-year study reveals 77% of Antarctica's coastline remains stable, but vulnerable sectors lose 5,000 sq mi of ice equivalent to 10 cities the size of LA every three years. Researchers use satellite data to measure glaciers and grounding lines, providing crucial benchmarks for ice sheet models and mass balance assessments.

SourceUniversity of California - Irvine·JournalProceedings of the National Academy of Sciences·TypeObservational study·DateMar 2, 2026

Unexpected feedback in the climate system

Researchers found a surprising correlation between West Antarctic Ice Sheet retreat and marine algae growth over the past 500,000 years. The study suggests that global warming may lead to reduced CO2 uptake if the ice sheet continues to shrink.

SourceUniversity of Oldenburg·JournalNature Geoscience·TypeObservational study·DateFeb 2, 2026

Antarctic ice melt triggers further melting: Evidence for cascading feedbacks 9,000 years ago

Research reveals that early Holocene ice-shelf retreat in East Antarctica was driven by oceanic forcing enhanced by meltwater discharge from neighboring regions. This self-reinforcing feedback loop accelerated inland ice loss, indicating that Antarctic ice retreat can propagate across multiple sectors through oceanic connections.

URI climate scientist contributes to research illustrating future impacts of Antarctic ice sheet melting

A team of researchers, including URI climate scientist Ambarish Karmalkar, used interactive modeling to predict the impact of Antarctic ice sheet meltwater discharge on climate and sea levels. Their findings show that while cold Antarctic meltwater will slow human-induced warming, it also causes uneven sea level rise and significant cl...

SourceUniversity of Rhode Island·JournalNature Communications·TypeComputational simulation/modeling·DateNov 5, 2025

And Swiss glaciers continue to melt

The Swiss Alps have experienced its fourth greatest shrinkage of glacier ice since 2003, with over 1,000 small glaciers disappearing since 2015. The rapid melting was driven by low snowfall and record-breaking heatwaves in June 2025.

SourceETH Zurich·TypeObservational study·DateOct 1, 2025

1.5°C Paris Climate Agreement target too high for polar ice sheets and sea level rise

A new study suggests that limiting global temperature increase to 1.5°C may not be enough to save the world's ice sheets, which could lead to significant losses and extensive displacement of coastal populations. The researchers argue that a target of around 1°C would be more effective in preventing rapid sea level rise.

SourceDurham University·JournalCommunications Earth & Environment·TypeSystematic review·DateMay 20, 2025

AI reveals new insights into the flow of Antarctic ice

Researchers at Stanford University used machine learning to analyze high-resolution remote-sensing data of ice movements in Antarctica, gaining new insights into the fundamental physics governing the large-scale movements of the Antarctic ice sheet. The study reveals that most of the ice shelf is anisotropic, with different physical pr...

SourceStanford University·JournalScience·DateMar 13, 2025

Ice streams move due to tiny ice quakes

Researchers at ETH Zurich discovered tiny ice quakes deep inside ice streams, explaining the discrepancy between simulations and satellite measurements. The findings impact sea-level rise estimates and may reveal fault planes in ice cores, providing a better understanding of ice stream deformation.

SourceETH Zurich·JournalScience·DateFeb 6, 2025

More, bigger crevasses open up in Greenland ice sheet, threatening increased sea level rise

A new study reveals that Greenland's ice sheet has experienced a significant increase in crevasses over the past five years, equivalent to adding a crack the size of the Great Pyramid of Giza every few days. The findings suggest a potential feedback loop that accelerates ice loss from the glacier, ultimately raising sea levels.

SourceUniversity of Florida·JournalNature Geoscience·TypeImaging analysis·DateFeb 3, 2025

Was ‘Snowball Earth’ a global event? New study delivers best proof yet

A new study from the University of Colorado at Boulder has uncovered strong evidence for a global 'Snowball Earth' event, where massive glaciers covered the entire planet down to the equator hundreds of millions of years ago. The findings provide critical insights into the planet's geologic history and the emergence of life on Earth.

SourceUniversity of Colorado at Boulder·JournalProceedings of the National Academy of Sciences·DateNov 11, 2024

The changing 'history' of a global ice sheet

A computer modeling study found that glacial isostatic adjustment caused downward movements in the eastern US, while upward movements occurred in eastern Canada, contributing to relative sea-level rise. The research will help generate maps for aquifer management and inform decisions on sea-level rise impacts.

SourceVirginia Tech·JournalJournal of Geophysical Research Solid Earth·DateNov 4, 2024

A blueprint for mapping melting ice sheets

The Open Radar Code Architecture (ORCA) offers scientists a standardized way to build ice-penetrating radar systems, reducing costs and increasing efficiency. This enables glaciologists to collect and reuse data more effectively, advancing research into melting ice sheets and sea-level rise.

SourceStanford University·JournalIEEE Transactions on Geoscience and Remote Sensing·DateOct 21, 2024

West Antarctic ice sheet may disappear by 2300

A Dartmouth-led study projects that Antarctica's glaciers will rapidly retreat and potentially collapse by 2200, increasing global sea levels by up to 5.5 feet by 2300. The researchers used 16 ice-sheet models to refine the projection of ice loss over the next 300 years.

SourceDartmouth College·JournalEarth's Future·TypeComputational simulation/modeling·DateSep 12, 2024