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SwRI-led PUNCH constellation launches

The PUNCH spacecraft will study the solar corona and track space weather events in three dimensions for the first time. The constellation includes four small suitcase-sized spacecraft that will provide a clear view of the Sun's outer atmosphere, allowing scientists to discern the exact trajectory and speed of coronal mass ejections.

Are volcanoes behind the oxygen we breathe?

New research suggests that volcanic activity billions of years ago accelerated oxygenation, leading to an increase in atmospheric oxygen. This pre-Great Oxygenation Event (GOE) may have provided the necessary conditions for photosynthetic microorganisms to thrive, ultimately paving the way for complex life.

SourceUniversity of Tokyo·JournalCommunications Earth & Environment·TypeComputational simulation/modeling·DateMar 10, 2025

HKUST, SUSTech, and NCAMS researchers reveal nitrogen’s dominant role in global organic aerosol absorption

A study published in Science reveals that nitrogen-containing compounds play a dominant role in the absorption of sunlight by atmospheric organic aerosols worldwide. The research provides a new framework for predicting climate change impacts and guiding mitigation strategies.

SourceHong Kong University of Science and Technology·JournalScience·TypeComputational simulation/modeling·DateMar 6, 2025

Models show intensifying wildfires in a warming world due to changes in vegetation and humidity; only a minor role for lightning

A new study reveals that climate change is driving intensifying wildfires by altering vegetation and humidity levels, but not significantly impacting lightning strikes. The simulations predict a 14% increase in global area burned by fires annually with every degree of global warming.

SourceInstitute for Basic Science·JournalScience Advances·TypeComputational simulation/modeling·DateFeb 12, 2025

Earth detecting Earth

Researchers found that radio signals, such as planetary radar emissions, are the most detectable technosignatures, visible from up to 12,000 light-years away. Atmospheric technosignatures like nitrogen dioxide emissions can be detected from 5.7 light-years away with the upcoming Habitable Worlds Observatory.

SourceSETI Institute·JournalThe Astronomical Journal·DateFeb 3, 2025

How does the atmosphere affect ocean weather?

A new study by scientists at the University of Rochester suggests that atmospheric wind has a surprising impact on ocean eddies, which are circular currents of water about 100 kilometers wide. The research reveals that wind can both energize and dampen eddies, depending on their spin direction.

SourceUniversity of Rochester·JournalNature Communications·DateJan 31, 2025

What happens in the ocean when two cyclones collide

When two tropical cyclones collide in the Indian Ocean, they can intensify considerably, leading to extreme interactions between the ocean and atmosphere. The study found that effects occurred that have only been observed with much stronger cyclones, including a cooling effect of three degrees Celsius and upwelling of deep water masses.

SourceUniversity of Oldenburg·JournalTellus A Dynamic Meteorology and Oceanography·TypeCase study·DateDec 10, 2024

The academic journal “Polar Science” features the seventh International Symposium on Arctic Research (ISAR-7)

The seventh International Symposium on Arctic Research (ISAR-7) addressed Arctic changes' impacts on residents and the global community. The symposium featured diverse presentations covering atmospheric sciences, terrestrial science, and humanities, highlighting the need for interdisciplinary research to achieve sustainable development.

Ytterbium thin-disk lasers pave the way for sensitive detection of atmospheric pollutants

Researchers at the Max Planck Institute for the Science of Light create a novel laser system that can detect a wide variety of atmospheric compounds with minimal interference. The system's ability to target the short-wave infrared range and generate high-power, stable pulses enables unprecedented detection sensitivity and accuracy.

SourceMax Planck Institute for the Science of Light·JournalAPL Photonics·TypeExperimental study·DateNov 18, 2024

Study reveals acceleration in Pacific upper-ocean circulation over past 30 years, impacting global weather patterns

A new study reveals significant acceleration in the upper-ocean circulation of the equatorial Pacific, driven by intensified atmospheric winds. The research provides a spatial view of long-term trends from observations, with potential impacts on regional and global climate patterns.

SourceUniversity of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science·JournalJournal of Geophysical Research Oceans·TypeData/statistical analysis·DateOct 31, 2024

Rocky planets orbiting small stars could have stable atmospheres needed to support life

A University of Washington-led study suggests that rocky planets orbiting M-dwarf stars can maintain stable atmospheres over time, enhancing the chances of supporting life. The James Webb Space Telescope has observed hotter planets without significant atmospheres, but temperate planets in the 'Goldilocks zone' may have stable atmospheres.

SourceUniversity of Washington·JournalNature Communications·TypeComputational simulation/modeling·DateOct 23, 2024

Liquefied natural gas carbon footprint is worse than coal

A new study by Cornell University finds that liquefied natural gas (LNG) exported from the US has a one-third larger carbon footprint than coal when considering processing and shipping. LNG's extraction, processing, transportation, and storage account for approximately half of its total greenhouse gas footprint.

SourceCornell University·JournalEnergy Science & Engineering·DateOct 3, 2024

Climate scientists express their views on possible future climate scenarios in a new study

A new study reveals that climate experts believe the Earth is headed for a rise in global temperatures far higher than the 2015 Paris Agreement targets. Two-thirds of respondents think we may succeed in achieving net zero CO2 emissions during the second half of this century, indicating some optimism about mitigation efforts.

SourceConcordia University·JournalCommunications Earth & Environment·TypeSurvey·DateOct 1, 2024

More CO₂ in the atmosphere during El Niño

A new study reveals that extreme El Niño events are responsible for the increased sensitivity of CO₂ in the atmosphere to tropical temperatures. This finding challenges previous assumptions about climate change and highlights the importance of understanding internal climate variability.

SourceUniversität Leipzig·JournalAdvances·TypeData/statistical analysis·DateSep 30, 2024