Researchers Adams and Pierce tested a controversial hypothesis that solar activity causes global warming by reducing cloudiness. They found changes in atmospheric ions and particle formation resulting from variations in the sun and cosmic rays were too small to affect climate, laying the hypothesis to rest.
SourceCarnegie Mellon University·JournalGeophysical Research Letters·DateMay 11, 2009
The CU-Boulder instrument, part of NASA's Hubble Servicing mission, will probe the universe's evolution from its perch on the Hubble Space Telescope. Scientists aim to reconstruct the physical conditions and evolution of the early universe by gathering information from ultraviolet light.
SourceUniversity of Colorado at Boulder·DateMay 7, 2009
The Cosmic Origins Spectrograph will explore the 'cosmic web', a rarefied network of hot gas lanes connecting galaxies, and map the structure of the universe. Astronomers hope to detail the evolution of the large-scale structure and understand how galaxies formed.
SourceUniversity of California - Berkeley·DateMay 7, 2009
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The Fermi telescope has detected a class of pulsars, probed gamma-ray bursts and watched flaring jets in galaxies billions of light-years away. The data may imply the presence of a nearby object beaming cosmic rays our way.
The Fermi telescope captured a hypnotic froth of gamma rays, revealing active galaxies called blazars flare up and fade out. The movie shows the entire sky as northern and southern halves, with bright colors indicating greater numbers of detected gamma rays.
Researchers at NC State University used a mathematical model to get a clearer picture of the galaxy's youngest supernova remnant. The data provides evidence that the remnant is from a type Ia supernova, raising questions about the generation of cosmic ray particles and magnetic field effects.
SourceNorth Carolina State University·JournalThe Astrophysical Journal Letters·DateApr 22, 2009
Florida Institute of Technology professors Ming Zhang and Hamid Rassoul receive a $411,000 NASA grant to investigate the physics of particle transport in the distant heliosphere. The IBEX spacecraft mission will observe particles from beyond Pluto's orbit, providing insights into cosmic rays and future human space travel.
Astrophysicists at Washington University in St. Louis will design and build Super-TIGER to measure the abundances of ultra-heavy galactic cosmic ray nuclei. The instrument aims to better understand the mechanism by which elements are accelerated in interstellar dust grains.
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Researchers using South Pole Telescope aim to detect extremely weak gravity waves produced by cosmic inflation. The detection could provide conclusive evidence for the theory, ruling out competing ideas for the universe's origin.
Researchers aim to understand the structure and dynamics of the heliosphere using cosmic rays to probe its outer environment. The project has potential implications for space weather forecasting and keeping astronauts safe from hazardous space radiation.
Scientists have discovered a strong correlation between cosmic-ray data and stratospheric temperature, allowing for the detection of major weather events such as Sudden Stratospheric Warming. This study has the potential to improve weather forecasting and climate modeling by providing a new tool for monitoring atmospheric conditions.
SourceThe National Centre for Atmospheric Science·JournalGeophysical Research Letters·DateJan 21, 2009
A team of scientists discovered a mysterious screen of extra-loud radio noise permeating the cosmos, preventing astronomers from observing heat from the first stars. The source of this cosmic background remains unknown.
SourceUniversity of California - Santa Barbara·DateJan 8, 2009
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The team found a cosmic puzzle that booms six times louder than predicted, ruling out origins from primordial stars and known radio sources. The source of this cosmic radio background remains a mystery, complicating efforts to detect the first stars in the universe.
Fermi Gamma-ray Space Telescope has discovered 12 new gamma-ray-only pulsars and detected pulses from 18 others. The finds are challenging our previous understanding of how pulsars work, with gamma rays now believed to originate far above the neutron star.
Research focuses on solar magnetic flux, which is linked to cosmic ray boosts. The study also investigates iceberg scrapes causing glacial quakes in Greenland. Additionally, scientists examine the renewed growth of atmospheric methane, which plays a significant role in ozone layer chemistry.
SourceAmerican Geophysical Union·JournalGeophysical Research Letters·DateDec 11, 2008
Swift's Ultraviolet/Optical Telescope (UVOT) observes the chemical composition of comet atmospheres, while its X-Ray Telescope (XRT) studies gas and solar wind interactions. This research offers clues about comets' origins and the solar system.
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Researchers at Los Alamos National Laboratory have identified two distinct regions with an excess of cosmic rays, challenging nearly a century-old understanding of galactic magnetic fields. The Milagro observatory recorded over 200 billion cosmic-ray collisions, revealing statistically significant peaks in specific regions of the sky.
SourceDOE/Los Alamos National Laboratory·JournalPhysical Review Letters·DateNov 24, 2008
The Milagro collaboration has discovered two nearby regions with an unexpected excess of cosmic rays, suggesting the presence of high-energy particle acceleration near Earth. This finding is the second recent study indicating a source of galactic cosmic rays relatively close to our planet.
SourceUniversity of Maryland·JournalPhysical Review Letters·DateNov 24, 2008
Researchers used a massive computer simulation to 'see' gamma-rays given off by dark matter in the Milky Way galaxy. They predict that these gamma-rays should glow in a characteristic pattern near the Sun, which could help detect invisible clumps of dark matter.
Researchers have successfully shielded spacecraft from deadly space weather using a portable magnetosphere, making a manned mission to Mars more feasible. The technology uses knowledge gained from nuclear fusion research to scatter solar wind particles away from astronauts.
SourceIOP Publishing·JournalPlasma Physics and Controlled Fusion·DateNov 4, 2008
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Astronomers have discovered a pulsar that blinks only in gamma-rays, providing new insights into stellar evolution. The pulsar, located in the CTA 1 supernova remnant, is thought to be part of a large population of similar objects, offering researchers a unique way to study stars in our universe.
Scientists have discovered a 10,000-year-old stellar corpse that only pulses in gamma rays, providing fundamental insights into the behavior of collapsed stars. The pulsar, located about 4,600 light-years away, emits 1,000 times the energy of our sun and is thought to be part of a larger population of similar objects.
Astronomers have found that magnetic fields are essential for black holes to swallow matter. The variations in visible light and X-rays were found to follow a repeated pattern, indicating that strong magnetic fields store energy near the black hole.
SourceESO·JournalMonthly Notices of the Royal Astronomical Society·DateOct 15, 2008
Researchers at Durham University and Caltech used gravitational lensing to study a young star-forming galaxy in the distant Universe, revealing its internal velocity structure and spiral disk. The findings provide insight into how the galaxy evolved into a present-day system like our Milky Way.
A $70 million CU-Boulder instrument will be installed on the Hubble Space Telescope in mid-October to study the 'fossil record' of gases in the early universe. The Cosmic Origins Spectrograph will gather information from ultraviolet light, allowing scientists to reconstruct the physical condition and evolution of the early universe.
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Research reveals cosmic dust originates from Koronis asteroids, with analysis matching mineralogy and chemistry to chondrite meteorite samples. The study provides new insights into the earliest history of our solar system.
SourceImperial College London·JournalGeology·DateSep 2, 2008
The Fermi Gamma-ray Space Telescope has revealed the entire gamma-ray sky, discovering pulsars in our galaxy and powerful processes near supermassive black holes. The telescope's first all-sky image shows glowing gas, blinking pulsars, and a flaring galaxy billions of light-years away.
The CLOUD experiment aims to understand the role of cosmic rays in cloud formation and climate change. By simulating cosmic ray intensity, researchers plan to uncover details of aerosol and cloud formation mechanisms.
Researchers at UF and FIT used electric field and X-ray detectors to study X-rays emitted by lightning. They found that X-rays are produced just below each step of the 'step leader' process, which helps understand how lightning travels.
SourceUniversity of Florida·JournalGeophysical Research Letters·DateJul 15, 2008
Scientists have made direct measurements of the solar wind termination shock using Voyager 2 data, which could help understand how cosmic rays are produced. The observations reveal intense plasma wave turbulence and unexpected effects, sparking revisions to theories.
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The Nanoprobe achieves 30-nanometer resolution using x-rays with photon energies between 3-30 kiloelectron volts. It combines scanning-probe and full-field transmission imaging for three-dimensional visualizations and quantitative analysis of elemental composition and chemical states.
A recent study reveals that 16 out of 21 oceanic shark and ray species are at risk of extinction due to unregulated and unsustainable fishing practices. Governments can take key steps to safeguard populations, including establishing science-based catch limits and ending shark finning.
Researchers at Argonne National Laboratory have developed a method to align large groups of molecules using lasers, allowing for atomic-level resolution imaging without crystallization. This breakthrough could enable the study of thousands of human proteins important for drug interactions.
The Gamma-Ray Large Area Space Telescope (GLAST) will study the gamma-ray sky in unprecedented detail, revealing extreme astrophysical processes like pulsars and supermassive black holes. The mission aims to comprehend the origin and distribution of dark matter.
SourceIOP Publishing·JournalPhysics World·DateMay 1, 2008
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Celestron NexStar 8SE Computerized Telescope combines portable Schmidt-Cassegrain optics with GoTo pointing for outreach nights and field campaigns.
Research reveals female vets exposed to x-rays, anaesthetic gases, and pesticides are twice as likely to miscarry during pregnancy. The study emphasizes the need for veterinarians to prioritize preventive measures and use protective devices at work.
SourceResearch Australia·JournalOccupational and Environmental Medicine·DateApr 10, 2008
Researchers used XMM-Newton to observe four polar BAL quasars, finding two of them emitted more X-rays than anticipated, suggesting a lack of absorbing gas. This discovery may indicate that BAL quasars are more complex than initially thought, with both equatorial and polar outflows potentially occurring simultaneously.
SourceEuropean Space Agency·JournalThe Astrophysical Journal Letters·DateApr 7, 2008
A new study published in Environmental Research Letters finds no correlation between cosmic rays and cloud cover, contradicting a 2007 TV program that suggested global warming is caused by a decrease in cosmic rays. The researchers from Lancaster and Durham Universities analyzed data and found no reliable connection between the two.
SourceIOP Publishing·JournalEnvironmental Research Letters·DateApr 3, 2008
Scientists confirm 1966 prediction that most energetic particles in the universe rarely reach Earth at full strength due to cosmic microwave background radiation. The GZK cutoff is a suppression of ultrahigh-energy cosmic rays, suggesting they come from galaxies beyond 150 million light years away.
SourceUniversity of Utah·JournalPhysical Review Letters·DateMar 20, 2008
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The GLAST spacecraft is preparing for its launch on May 16 at the Kennedy Space Center. It will explore extreme environments in the universe, studying supermassive black hole systems, pulsars, and cosmic rays. The mission aims to answer questions about gamma-ray bursts and other cosmic phenomena.
The Wilkinson Microwave Anisotropy Probe (WMAP) has revealed a sea of cosmic neutrinos permeating the universe and provides evidence that the first stars took more than half a billion years to create a cosmic fog. The new data also places tight constraints on the burst of expansion in the universe's first trillionth of a second.
Researchers at Imperial College London have developed a new type of sensor that uses T-rays to detect explosives and poisons. The technology guides the radiation along a specially designed surface, increasing detection sensitivity and potentially revolutionizing security screening.
SourceImperial College London·JournalNature Photonics·DateFeb 5, 2008
Researchers at the University of Michigan have developed a new terahertz device that can reveal hidden artworks beneath layers of plaster or paint in centuries-old buildings. The device uses pulses of terahertz radiation to detect subtle changes in material, allowing for non-destructive imaging of artworks.
SourceUniversity of Michigan·JournalOptics Communications·DateFeb 4, 2008
Researchers separate TV, phone and internet signals using a technique called MGDM, which transmits each signal through a separate group of light rays. This technology has the potential to increase fibre network capacity and transmit information without disruption.
SourceNetherlands Organization for Scientific Research·DateJan 24, 2008
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Astronomers have detected a mysterious type of cosmic explosion, known as a short gamma-ray burst (GRB), 7.4 billion years ago, more than halfway back to the Big Bang. This discovery dramatically moves back the time at which we know short GRBs were exploding.
An international team, including University of Oregon scientists, suggests two possible explanations for the lack of a gravitational wave signal in February's gamma ray burst from Andromeda. The findings propose either a merger event beyond Andromeda or a soft gamma-ray repeater within Andromeda as potential origins.
A team of astronomers discovered that a white dwarf, AE Aquarii, emits high-energy X-rays as it whirls around on its axis, similar to the Crab Nebula's pulsar. This behavior indicates that white dwarfs can accelerate charged particles to near-light speed, potentially contributing to cosmic rays.
The Suzaku X-ray observatory has provided new insights into cosmic powerhouses, identifying pulsar wind nebulae as the source of high-energy gamma rays. The observations also suggest that these objects are accelerating mostly protons, leading to a better understanding of the origin of cosmic rays.
The Pierre Auger Collaboration has found an anisotropy in cosmic ray arrival directions correlated with galaxies containing active galactic nuclei. This discovery suggests that AGN are the source of the most energetic particles reaching Earth.
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Researchers aim to develop an instrument that can reveal crucial data about the nature and origin of cosmic rays. Cerenkov radiation, emitted when particles travel faster than light through the atmosphere, holds key to understanding these enigmatic particles.
Researchers at Argonne National Laboratory have created a compact device that can generate terahertz radiation, a non-ionizing form of electromagnetic radiation. This technology has the potential to enhance airport security by detecting hazardous substances and identify certain types of cancers through imaging capabilities.
SourceDOE/Argonne National Laboratory·JournalScience·DateNov 26, 2007
Scientists have established a correlation between high-energy cosmic rays and distant active galactic nuclei (AGNs), suggesting massive black holes in the center of galaxies as a possible source. The Pierre Auger Observatory detected 28 cosmic rays with energies greater than 60 EeV, most of which originated from locations near known AGNs.
SourceDOE/Argonne National Laboratory·JournalScience·DateNov 9, 2007
A team of scientists has identified astrophysical objects with charged particles reaching Earth at high energies. The Pierre Auger Observatory in Argentina recorded the particles, which carry as much energy as a bullet or a tennis ball off Roger Federer's racket.
SourceUniversity of California - Los Angeles·JournalScience·DateNov 9, 2007
Researchers from the University of Granada and the Pierre Auger Collaboration have found a link between active galactic nuclei and high-energy cosmic rays. The study suggests that these galaxy centers are responsible for producing the most energetic particles in the Universe.
SourceUniversity of Granada·JournalScience·DateNov 9, 2007
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The Pierre Auger Observatory has found that active galactic nuclei, powered by super-massive black holes, are the most likely source of the highest-energy cosmic rays. The sources of these particles are not distributed uniformly across the sky, but rather linked to nearby galaxies with active nuclei.
SourceNew York University·JournalScience·DateNov 8, 2007
Researchers have found a significant correlation between high-energy cosmic rays and the cores of nearby galaxies, which emit prodigious quantities of energy. The Auger collaboration has traced the source of these cosmic rays to Active Galactic Nuclei (AGN), likely powered by supermassive black holes.
SourceUniversity of Chicago·JournalScience·DateNov 8, 2007
Scientists from 17 countries identify Active Galactic Nuclei (AGNs) as the most likely source of the highest-energy cosmic rays using data-gathering equipment designed at Michigan Tech. The findings, reported in Science journal, bring researchers closer to understanding the origin of ultra-high energy particles.
SourceMichigan Technological University·JournalScience·DateNov 8, 2007
A study by scientists has found that the most energetic particles in the universe – ultrahigh-energy cosmic rays – are correlated with the centers of active galaxies hosting violent black holes. The sources are thought to be within 326 million light years, our local neighborhood in cosmic terms.
SourceUniversity of Utah·JournalScience·DateNov 8, 2007
The Pierre Auger Observatory has found that the sources of the highest-energy cosmic rays are linked to nearby galaxies with active nuclei in their centers. This discovery provides new insights into the origin and acceleration of these particles.
SourceDOE/Fermi National Accelerator Laboratory·JournalScience·DateNov 8, 2007
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Researchers have found an unusual cold spot in the cosmic microwave background that could be caused by a cosmic defect created just after the Big Bang. The discovery provides a potential window into understanding the fundamental nature of elementary particles and forces.
SourceAmerican Association for the Advancement of Science (AAAS)·JournalScience·DateOct 25, 2007
Researchers at University of Cambridge and Institute of Physics of Cantabria propose existence of cosmic defects called textures, predicted by particle physics theories. Textures are defects in vacuum left over from hot early universe, observed as hot and cold spots in cosmic microwave background radiation.
SourceUniversity of Cambridge·JournalScience·DateOct 25, 2007