ERIK MARTIN WILLÈN
Author of science fiction
Tuesday, October 6, 2026
When the atmosphere slows the Earth: Uncovering a subtle signal of climate change - Earth - Earth Sciences - Environment
The increasing trend of AAM with global
warming. Credit: Susmit Subhransu Satpathy
Atmospheric circulation governs
weather and climate, but it also carries angular momentum. When winds shift or
mass redistributes, the atmosphere can exchange momentum with the solid Earth,
slightly altering the planet's rotation rate. This is not a new concept, but
what happens under long-term global warming?
Previous studies have projected an
increase in atmospheric angular momentum (AAM). However, the reason remained
unclear. Was it simply stronger winds? Or was there a deeper dynamical
restructuring of the atmosphere?
We set out to answer this in our
paper in npj Climate and Atmospheric Science.
Tracing the fingerprint of global warming
Using large-ensemble climate
simulations from three different global models, we examined how atmospheric
circulation evolves under a high-emissions scenario. What emerged was a consistent and
physically coherent picture:
- The Hadley cell expands poleward.
- Subtropical jets
intensify.
- Tropical trade winds
weaken.
- Upper-level zonal winds
strengthen.
These are well-known responses to
warming, but together they systematically increase AAM.
At the same time, something equally
important happens at the surface: momentum exchange between the atmosphere and
the solid Earth weakens. This reduces Earth's efficiency at "keeping
up" with the changing atmosphere.
The weakening of the momentum exchange
between the solid Earth and atmosphere through changing mountain and friction
torques. Credit: Susmit Subhransu Satpathy
The
result? A slightly faster-moving atmosphere and a slightly slower-rotating
Earth.
The changes we identify are subtle.
By the end of the 21st century, the increase in the length of day (LOD) due to
atmospheric changes reaches about 10%–18% of the long-term tidal friction
trend.
At first glance, this may seem
modest. But it is significant for two reasons:
- It represents a
systematic, externally forced signal, not just internal variability.
- It emerges from
well-understood dynamical changes in atmospheric circulation.
To place this in context, tidal
friction has long been considered the dominant driver of long-term rotational
slowing. Our comparison is not intended to suggest equivalence, but to provide
a physically meaningful benchmark for interpreting the magnitude of the
atmospheric contribution.
The importance of the atmosphere in
contributing to Earth's rotational dynamics. Credit: Susmit
Subhransu Satpathy
At the same time, recent studies
highlight that core-mantle interactions dominate Earth's rotation variability on decadal to centennial timescales. Our results,
therefore, position atmospheric changes as an additional, climate-driven
component within this broader rotational system. Hence, global warming is
reorganizing atmospheric circulation in a way that measurably influences
Earth's rotational dynamics.
Looking ahead
Our study highlights a broader
idea: climate change is not just altering temperature, precipitation or
extremes; it is reshaping the fundamental dynamical balance of the Earth
system. The atmosphere, oceans, cryosphere and solid Earth are tightly coupled.
Changes in one component inevitably propagate into others, sometimes in
unexpected ways.
Understanding these connections
will be crucial as we move forward.
This work began with a simple
question about rotation. It evolved into a deeper exploration of how
atmospheric dynamics respond to warming and how these changes ripple through
the Earth system.
The signal we identify is
systematic, physically grounded and a part of the larger story: global warming
is influencing Earth in ways that extend far beyond the climate system itself.
This story is part of Science X Dialog, where researchers can report findings from their published research articles. Visit this page for information about Science X Dialog and how to participate.
by Susmit Subhransu Satpathy
edited by Sadie Harley, reviewed by Robert Egan
Source: When the atmosphere slows the Earth: Uncovering a subtle signal of climate change



