Scientists have discovered a creep mechanism in high-pressure phases of ice that affects grain size, indicating weaker ice layers in giant icy moons. This finding challenges previous theories on the thermal evolution and internal dynamics of these moons.
Researchers found that volcanic aerosols can cool the ocean surface by up to .037 degrees Celsius, reducing sea level rise by several centimeters. The cooling effect can persist for decades, offsetting human-induced warming and showing a significant impact of volcanoes on climate.
Global warming is likely to change river flows in ways that may result in both increased flood risk and water shortages. The predictions assume atmospheric carbon dioxide concentration doubles from preindustrial levels, leading to higher winter-time river flows and lower spring and summer flows.
Astronomers discover an Earth-like planet with a solid core, orbiting a red dwarf star five times less massive than the sun. The discovery, made using microlensing technique, reveals thousands of potentially habitable planets in distant parts of the galaxy.
Researchers from Livermore have determined the phase boundaries for carbon at pressures up to 20 million atmospheres and temperatures over 10,000 degrees Kelvin. The study provides results on the physical properties of carbon, essential for devising models of Neptune, Uranus, and white dwarf stars.
Researchers have discovered a way to strengthen carbon nanotubes by heating them to extreme temperatures, resulting in a nearly 280% increase in strength and a significant reduction in diameter. This breakthrough has implications for the development of high-temperature-resistant ceramics and electronics.
Researchers discovered faint visible 'echoes' of three ancient supernovae by detecting centuries-old light reflected by interstellar gas clouds. The oldest echo is likely over 600 years old, offering a chance to study famous supernovae like those observed in 1006 and 400 years ago.
The study predicts a 8 degree Celsius warming of the planet if all fossil fuels are used by 2300, with severe consequences for polar regions and oceans. The land would experience a drastic change from ice to boreal forests, while oceans would become more acidic and harm marine life.
Research from Lawrence Livermore National Laboratory and Carnegie Institution suggests that planting trees in the US could cool the Earth for a few decades, but lead to planetary warming in the long term. Tropical forests, however, can help keep global temperatures cool by evaporating water and absorbing carbon dioxide.
Lawrence Livermore National Laboratory scientists have precisely measured the interaction of matter with photons in extreme electric fields surrounding the nucleus of uranium. The results demonstrate a new milestone in QED research, putting a new constraint on theory and paving the way for further calculations.
The National Ignition Facility's first experiments successfully validated computer simulations for controlled laser-induced ignition. Researchers fired laser beams into gold-plated cylinders, creating X-rays that ablated and imploded a capsule to achieve brief bursts of energy.
Researchers from Lawrence Livermore National Laboratory conclude that competitive accretion cannot explain observed star-forming regions. The new model, which favors gravitational collapse, accurately predicts the formation of massive stars and heavy elements in supernovae. Turbulence opposes gravity, preventing rapid core collapse.
Researchers used FRET and ALEX techniques to measure protein distances, shedding light on protein folding dynamics. The study aims to understand how proteins fold and unfold, holding key to Alzheimer's disease prevention and treatment.
Researchers at Lawrence Livermore National Laboratory used fluorescence resonance energy transfer (FRET) to study the transcription of genes in DNA. They found that the initial and final stages of this process occur simultaneously, contradicting earlier theories that proposed separate processes for these stages.
Researchers have unveiled a new technique to characterize binding interactions of multivalent molecules designed for targeted drug delivery in cancer treatment. This method, using atomic force microscopy, shows promise for optimizing binding affinity and designing better antibodies.
Researchers have developed a new dating technique using radioactive carbon-14 in tooth enamel, which can accurately determine a person's age at the time of death within 1.6 years. This method can help forensic scientists identify victims of disasters like Hurricane Katrina and narrow down search efforts.
The development of micro-reactors poses a challenge to the Chemical Weapons Convention's monitoring and verification capabilities. These small reactors can produce lethal chemicals with minimal signature, making it harder to detect malicious intent.
Recent warming of the tropical troposphere has been confirmed by new observational estimates and state-of-the-art climate models. The warming trend is attributed to an 'amplification' effect caused by moist air rising and condensing into clouds, with temperature changes in the deep tropics larger than at the surface.
Researchers have identified the regulatory element responsible for Van Buchem disease, a hereditary disorder that causes facial distortions, osteosclerosis, and vision and hearing loss. The discovery provides insight into long-range gene regulation and could lead to new treatments for osteoporosis.
Scientists developed a new bioinformatics technique to analyze key DNA regions controlling gene activity. The approach uses machine learning to predict binding site combinations and regulate genes, achieving success rates comparable to existing methods.
Researchers using Cassini-Huygens Spacecraft measured Titan's temperature, winds, and chemical composition, finding methane abundance and seasonal changes comparable to Earth's. The study suggests Titan's organic chemistry is an analog of early terrestrial processes, potentially hinting at the moon's habitability.
A study of gene expression in a microbial community found over 2,000 proteins produced by five key species, including unique enzymes that maintain protein structure in acidic conditions. The community thrives in hot, highly acidic environments, with large numbers of proteins not resembling any other known proteins.
Researchers have refined the estimated lifetime of the solar nebula to roughly 2 million years, based on analysis of chondrules and Calcium Aluminum-rich inclusions found in the Allende meteorite. This finding suggests that oxygen was evolving rapidly during this period.
Researchers are using two giant detectors in Minnesota and Illinois to explore the properties of neutrinos, particularly their ability to change flavors. The goal is to understand how particles acquire mass and its role in the formation of the universe and dark matter.
Researchers have made significant progress in understanding the causes of recent climate change, attributing warming to human influences. By analyzing climate models and observational records, scientists have identified key drivers of temperature changes, including greenhouse gases and solar irradiance.
Researchers measured ancient moraine crests to determine past movement on the Karakorum fault, revealing a significant right-lateral motion. The study's findings provide crucial insights into the Asian continent's movement and the collision of India and Asia.
Researchers from Lawrence Livermore National Laboratory have detected a unique 2175 Å wavelength feature in interstellar grains within interplanetary dust particles. The feature is carried by carbon and amorphous silicate grains, abundant in IDPs, which may help explain how some IDPs formed from interstellar materials.
Astronomers have discovered that radio jets from black holes can trigger the collapse of interstellar clouds and induce star formation. The jets' collision with dense gas leads to the creation of new stars, bringing 'new life' to these systems.
Gene deserts, once thought to be 'junk DNA,' play a crucial role in regulating gene activity. Researchers discovered stable desert regions with non-coding regulatory elements and variable regions with limited functionality.
Researchers used atomic force microscopes to study the effects of biomolecules on crystal dynamics and shape. They found that specific interactions between growth modifiers and step edges controlled the formation of complex crystal shapes, challenging long-held theories.
Researchers propose new experimental measurements to verify existence of maximum melting temperature and transformation of solid molecular hydrogen to metallic liquid. Calculations predict quantum fluid at around 4 million atmospheres of pressure, contradicting intuitive expectations.
Researchers from Lawrence Livermore National Laboratory are presenting their work on using accelerator mass spectrometry (AMS) to detect carcinogens, study biomarkers for atherosclerosis, and develop novel drug delivery devices. AMS applications in biological research and soot production chemistry modeling will also be highlighted.
Researchers at Lawrence Livermore National Laboratory have developed a novel technique to quantify stratospheric ozone in the upper troposphere. This allows for better understanding of how much ozone is transported from the stratosphere to the upper troposphere, affecting climate and atmospheric chemistry.
The TAOS Project will search for comets by monitoring the brief eclipses of background stars as these objects pass between the telescopes and their light source. This innovative method allows scientists to detect small, faint objects that are too far away to be seen in reflected sunlight.
Lawrence Livermore physicist Bruce Remington explores using lab astrophysics to recreate supernovae explosions, understand cosmic rays, and study black holes. Lab experiments also aim to probe planet interiors and gamma-ray bursts.
Researchers at Lawrence Livermore National Laboratory presented preliminary findings associating unique gas flows with rapidly rotating black holes. The study aims to explain unusual periodic timing properties in X-rays emitted near suspected black holes.
Researchers from the Lawrence Livermore National Laboratory have detected a dark matter object in the Milky Way using microlensing light data and spectroscopy. The team measured the mass, distance, and velocity of the MACHO, a small star with a mass between 5% and 10% of the sun's mass at a distance of 600 light-years.
Researchers will model and study supernovae to discover how they occur and the complex physical processes involved. They aim to understand challenging issues in theoretical and computational physics, advancing national security interests.
Researchers have confirmed an estimated 30,000 human genes using a comparative analysis of human chromosome 19 with similar sections of mouse DNA. The study found over 300 additional human genes and confirmed the existence of other computer-predicted genes.
Astronomers have discovered over 154 rapidly moving stars towards the center of the Milky Way and its brightest neighboring galaxy. The findings are significant as these stars were previously difficult to detect due to their extreme density, allowing scientists to gain insights into the galaxy's most densely packed regions.