Researchers compare fossilized leaves with modern plant material, finding marked increases in insect damage to plants; human activity, including climate change and urbanization, are suspected causes.
A new study using high-resolution satellite observations confirms theoretical predictions and computational models of sea-level changes in the region surrounding the Greenland ice sheet. The research adds confidence to projections of sea level rise across the next decades and century.
Scientists have found that the tectonic stress in Japan's Nankai subduction zone is less than expected, contradicting predictions of a major buildup of pent-up energy. The research suggests that the fault may not be as unstable as thought, but still requires further investigation and long-term monitoring.
Julie Castillo-Rogez and Martin Jutzi have made significant contributions to understanding asteroids, including their origins and dynamical evolution. Their work has advanced our knowledge of asteroids, from small bodies to planetary scales, with implications for ongoing space missions.
A new study identifies areas in Antarctica's East region that could significantly contribute to sea-level rise if they undergo basal thaw. The researchers used numerical ice sheet models to simulate temperature changes at the base of the ice sheet, revealing regions such as Enderby-Kemp and George V Land as most susceptible to thawing.
The Eastern Mediterranean and Middle East are expected to warm by up to 5°C this century, with unprecedented heatwaves, droughts, and dust storms predicted. The region is warming almost twice as fast as the global average, posing significant threats to water and food security.
A new study reveals two preserved slabs in the upper mantle beneath Myanmar, strongly supporting the double subduction model. The findings provide convincing geoscientific evidence to consolidate this model, which explains anomalously fast India-Asian convergence.
The Louisiana State University campus mounds are the oldest known man-made structures in North America, with construction beginning at approximately 11,000 years ago. The mounds were built by ancient indigenous people and feature a coordinated alignment with the brightest star in the night sky.
The UW Photonic Sensing Facility uses fiber-optic sensing technology to detect ground motions as small as 1 nanometer for seismology, glaciology, oceanography, and infrastructure monitoring. The new center will expand seismic data collection by thousands of times.
A new study suggests Europa's ice shell could be orders of magnitude purer than previously thought due to the formation of frazil ice, which keeps salt in seawater. This could affect the ice's strength and heat transfer, making it crucial for understanding Europa's habitability.
New paleomagnetic research suggests the solid inner core formed around 550 million years ago and restored Earth's magnetic field. The study provides clues about planetary evolution, habitability, and the potential for life on other planets.
Researchers developed a methodology to attribute coastal glacier retreat to human-caused climate change, revealing that even modest global warming causes most glaciers to melt or retreat. The approach simulates the behavior of real ice sheets like Greenland's, helping predict major ice loss and informing decision-making for policymakers.
A team led by Northern Arizona University will investigate the tectonic and geodynamic processes controlling faulting, magmatism, and surface deformation in the Pacific Ocean. The research aims to better understand the asthenosphere's role in seismic and volcanic events.
Researchers recreated ancient ammonite movement using robotic models, exploring trade-offs between stability and maneuverability. The study found that different shell shapes offered varying advantages and consequences, with no single perfect design.
Researchers identify three stages in convergent plate margin formation, from low-angle subduction to rifting zones. They also reveal the importance of material movement and thermal state changes in shaping these dynamic systems.
New research highlights how climate change enhances wildfire risk globally, but human actions and policies can mitigate regional impacts. The study assesses 500 previous papers and examines future fire weather trends to provide insight into the success or failure of climate policies.
A team of scientists used high-pressure X-ray measurements to study the structure of SiO2 glass. They found bimodal features in the silicon's second shell, corresponding to a tetrahedral symmetry structure at low pressures and collapse at high pressures. This discovery sheds light on the nature of silicate magmas and materials science.
The Biofinder instrument has successfully detected bio-residue in ancient fish fossils from the Green River formation, confirming that biological residues can survive millions of years. The device's capabilities make it an ideal tool for future NASA missions to detect signs of past life on other planetary bodies.
Researchers have categorized convergent plate margins into three stages based on geometric structure, dynamic regime, and thermal state. The transformation from subduction zones to rifting zones involves two steps: lithospheric thinning and asthenospheric upwelling.
A team of scientists has discovered a novel magnetotactic bacterium that forms intracellular amorphous silica globules. This finding suggests a previously unobserved influence on the global silicon cycle during early Earth history, expanding our knowledge of prokaryotic biosilicification.
Researchers at the University of Alaska Fairbanks Geophysical Institute found new indicators of permafrost thawing in Interior and Northwest Alaska. Talik formation, volumes of unfrozen ground within permafrost, will increase carbon movement and affect water quality.
Researchers simulated earthquakes in a lab and found that fine-grained gravel formed at fault boundaries can trigger powerful ruptures, contrary to previous beliefs about stable faults. The study used high-pressure and shear simulations to show that rock gouge weakens friction between plates, leading to intermittent slip.
A joint research team has discovered ancient continental rocks at the Southwest Indian Ridge, dating back 2.7 billion years. The rocks' composition suggests they were recycled from the neighboring African continent through the asthenosphere, challenging current understanding of oceanic crust formation.
Research by University of Texas Institute for Geophysics reveals how ancient global warming affected the Gulf of Mexico's marine life and chemistry. The study found that radiolarians thrived in the Gulf due to nutrient-rich river sediments, providing valuable lessons about current climate change.
Researchers have discovered deep underground magma containing 8-20 weight percent water, far wetter than previously thought. This find sheds light on the role of water in explosive volcanic eruptions and the formation of economic ore deposits.
40-million-year-old tropical reef corals from Leipzig University's collection provide a unique climate archive. The coral skeletons reveal small seasonal temperature fluctuations of about half the current value, confirming expected small differences in the planet's warm periods.
The Tianwen-1 mission has successfully observed solar wind plasma upstream of Mars, revealing several large-scale solar wind disturbances and consistent tendencies with other Mars missions. The joint observation will bring new opportunities for studying the evolution of the Martian atmosphere and paleoclimate.
A new method of detecting mega earthquakes uses deep-learning models to assess the magnitude of these events, providing an earlier warning for tsunamis. This approach leverages gravity waves generated by large earthquakes, allowing for more accurate estimation and faster response time.
Researchers have discovered a 30-mile-long, 9-mile-wide subglacial lake in East Antarctica that may hold the key to understanding the continent's glaciation history. The sediments at the bottom of Lake Snow Eagle could provide valuable insights into climate change and the ice sheet's possible demise.
A new method developed by LMU geophysicist Max Moorkamp improves the accuracy of understanding the Earth's crust composition. By combining data on electrical conductivity and density, researchers can better distinguish between fluids and solid graphite in geological regions.
Researchers analyzed stress perturbation on the Maqin-Maqu segment of the Eastern Kunlun fault after the 2021 Ms7.4 Maduo Earthquake, finding it likely to be substantially stressed and promote earthquakes on the seismic gap. The study predicts increased seismic activity in surrounding faults.
Researchers developed an interdisciplinary resilience framework to understand the connection between social and water systems in communities like the Choyeros. The framework explores how social systems impact water supply resilience and vice versa, providing a tool to generate conversations and coordinate responses.
Researchers found a slow, shallow magnitude 8.16 subevent that contributed over 70% to the seismic moment of the 2021 South Sandwich Island earthquake. The event was 'invisible' at first glance and had unusual features, including a massive aftershock area and tsunamis across three oceans.
Researchers find evidence of water pockets beneath the icy surface of Europa, which could facilitate exchange between the subsurface ocean and nutrients from neighboring celestial bodies. The discovery suggests a dynamic ice shell that supports habitability on the Jupiter moon.
The Urban Seismology Project successfully installed a geophone array in Yangon, Myanmar despite the challenges posed by the COVID-19 pandemic. The project aimed to build geophysics capacity in the nation and monitored a potentially locked subduction zone and major strike-slip fault.
A team of researchers led by Purdue University's Michael Sori found that smaller Martian ice deposits hold key evidence for the planet's orbit and axial tilt's impact on its climate. The study used NASA's HiRISE camera images to analyze layer shapes in an ice deposit, providing insights into Mars' climate history.
Seismologists have developed methods to take wave signals from seismometers and reverse engineer features of the medium they pass through, known as seismic tomography. A new full-waveform inversion model uses 3D wave simulations and data sensitivities at the global scale to improve the resolution of current seismic models.
Researchers at RIKEN Center for Computational Science used computer simulations to show that extreme weather phenomena can be controlled by making small adjustments to variables in the weather system. The study's findings promise multiple applications, including preventing and mitigating extreme windstorms.
A new study published in AGU journal Geochemistry, Geophysics, Geosystems suggests that Earth formed inside a solar nebula. The research found that vast stores of helium-3 from the Big Bang are leaking out of the Earth's core, providing evidence for this theory.
A new study using subsurface imaging sheds light on the geological connection between Yellowstone's iconic hydrothermal features and deeper heat sources. The research team detected hydrothermal alteration and found a remarkable similarity in deep structure beneath areas such as Norris Geyser Basin and Lower Geyser Basin.
Scientists used supercomputers to model plate tectonics and reconstruct dynamics of Pacific plate motion. The study explains the mysterious 60-degree bend in the seamount chain by introducing a new factor: subduction zones in the Russian Far East.
A new machine learning study analyzed 10 years of weather data to identify three major categories of weather patterns and their effects on thunderstorms. The study aims to isolate the impact of aerosols, tiny particles suspended in the atmosphere, on storm severity.
Researchers used geochemical data from 225 hot springs to create a detailed map of the boundary between the Indian and Asian continental plates, revealing processes occurring deep below the surface. The findings suggest that an old theory about the flat position of the Indian plate beneath Tibet is no longer tenable.
Scientists propose a new mechanism by which oxygen accumulated in the atmosphere, shifting the planet out of its low-oxygen equilibrium. Interactions between certain marine microbes and minerals in ocean sediments may have prevented oxygen consumption, setting off a self-amplifying process.
Researchers have discovered a surprisingly soft mineral, davemaoite, that plays a crucial role in the Earth's recycling of rocks. The study suggests that davemaoite is around 1,000 times softer than other minerals in the mantle, and its mechanical properties can help explain how earthquakes and volcanoes occur.
Researchers have measured deformation of mineral davemaoite under conditions inside the Earth's mantle, finding it to be surprisingly soft. This discovery challenges previous ideas about subducting slabs in the lower mantle, suggesting a detachment of crust from the underlying plate can occur.
Researchers have expanded knowledge of hematite's magnetic and color properties to better understand past climates and environments. Hematite's presence on Mars may provide clues about climatic variations, water presence, and potentially life.
University of Utah researchers measured 14 rock towers in Utah to predict their seismic stability. They used mathematics that describe built structures' resonance to create a dataset, allowing for predictions without climbing the towers.
A recent study by a UT graduate student has unraveled the enigma of how tectonic plates break Earth's rock-hard shell. By monitoring seismic images and matching them with rock samples, the researcher found that a small break in the Australian plate grew over millions of years until it unzipped and set in motion a runaway geologic process.
The NUIST-CFS1.0 model has positive skill in seasonal precipitation forecasts across Ethiopia, Kenya, Uganda, and Tanzania, with relatively accurate products throughout the rest of East Africa.
Researchers detected 43 trillion miniature plastic particles in Switzerland every year, with estimates suggesting up to 3,000 tonnes of nanoplastics covering the country annually. The study reveals that nanoplastics originate primarily from urban areas and global emissions, posing potential health risks when inhaled.
A recent study led by the University of Texas at Austin has found that liquid water detected under Mars' ice-covered south pole is likely a dusty mirage. However, the researchers suggest that ancient lakes and riverbeds may still be present on the planet, offering clues about its wetter past.
A Southwest Research Institute scientist found compelling evidence for a liquid internal ocean on Mimas, a small Saturn moon. The discovery expands the definition of habitable worlds and suggests that worlds like Earth with surface oceans may not be unique in the galaxy.
A University of Washington team has discovered 349 methane gas plumes bubbling up from the seafloor in Puget Sound. The bubbles are likely connected to underlying geology and may be a natural source of methane, rather than human activity.
Researchers discover Amazon basin as main mechanism for precipitation in Atacama Desert, accounting for 40-80% of total precipitation. The findings reveal a new pathway of water supply for the driest region on Earth, aside from summer rain, through moist easterly winds and winter storms.
The Chang'E-5 lander has made the first onsite detection of water on the Moon, providing evidence of hydroxyl and/or H2O presence. The discovery was made using reflectance spectral data from the lunar surface acquired by the lander.
New research suggests that ultra-low velocity zones in the deep mantle may be regions made of different rocks than the rest of the mantle, with compositions potentially linked to the early Earth. The study's findings imply the presence of layered structures within these zones, shedding light on their origin and evolution.
A team of scientists has discovered a thick layer of paleoregolith on the lunar surface, which could provide insight into the Moon's early asteroid impact and volcanic history. The findings suggest the paleoregolith formed much faster than previously estimated, with implications for understanding meteoric activity in the solar system.
A research team analyzed seismic noise recorded over the last decade to better understand volcanic processes at Campi Flegrei. They found that directionality loss in noise data indicates the migration of deep fluids towards the eastern caldera, which triggers earthquakes.
The discovery of a Roman arched aqueduct in Artaxata-Artashat in ancient Armenia provides evidence of the failure of Roman imperialism. The aqueduct, built between 114 and 117 CE, was never completed due to the relinquishment of the province by Emperor Hadrian after Trajan's death.