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Search results for “Cosmology”

668 results for "Cosmology"

The SKA Project: Just the latest chapter in a story thousands of years old

Researchers in South Africa's Karoo region are redefining the relationship between Indigenous knowledge and modern science, as they study the ethnoastronomical knowledge of local communities. The project, which involves elders and knowledge holders, highlights the dynamic and adaptive nature of traditional knowledge, which continues to...

SourceSissa Medialab·JournalJournal of Science Communication·TypeObservational study·DateAug 31, 2026

The Gravity from Entropy theory offers new clues for reconciling gravity with the second law of thermodynamics

A new study by Queen Mary University mathematician Professor Ginestra Bianconi proposes a perspective on the deep question of how the Universe can become increasingly structured while obeying the second law of thermodynamics. The Gravity from Entropy theory suggests that gravity and spacetime may have an intrinsic thermodynamic and inf...

SourceQueen Mary University of London·JournalPhysical Review·DateJul 17, 2026

Dark forces hinder the growth of the Universe

Researchers studied dark matter's potential additional attractive force and found it suppresses structure growth, contrary to expectations. The extra clustering effect is counterbalanced by a decrease in dark matter particles' mass over time, reducing the overall impact on cosmic microwave background observations.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateJun 22, 2026

To discover new physics, AI may need to “unlearn” the old one

A new study explores how transfer learning reduces computational costs in cosmological simulations while revealing risks of negative transfer, which can hinder learning new physics. Transfer learning can accelerate inference but may also push AI systems toward incorrect interpretations of new effects.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateJun 10, 2026

New Chinese Medicine and Culture journal issue explores traditional Chinese medicine across history and borders

This journal issue examines the evolution of traditional Chinese medicine through texts, practice, empire, and global cross-cultural exchange. Key findings include the gradual development of foundational concepts like the three yin-yang system and the concept of Du, as well as the role of medicine in political and social systems.

SourceCactus Communications·JournalChinese Medicine and Culture·DateApr 30, 2026

Dark matter could explain earliest supermassive black holes

A study led by University of California, Riverside graduate student Yash Aggarwal suggests that dark matter decays could have seeded the direct collapse of galaxies into giant black holes. The research found that a window of dark matter masses between 24 and 27 electronvolts could produce conditions for black hole formation.

SourceUniversity of California - Riverside·JournalJournal of Cosmology and Astroparticle Physics·TypeComputational simulation/modeling·DateApr 15, 2026

The local universe’s expansion rate is clearer than ever, but still doesn’t add up

An international collaboration of astronomers has achieved the most precise direct measurement to date of the expansion rate of the nearby Universe. The result shows a persistent mismatch between measurements based on the nearby Universe and predictions derived from the early Universe, known as the Hubble tension.

What if dark matter came in two states?

Researchers suggest that dark matter may consist of multiple particles, whose behavior varies depending on the cosmic environment. This could explain why a signal observed at the center of our galaxy is not seen in dwarf galaxies.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateApr 9, 2026

New theory reshapes quantum view of Big Bang

Researchers at the University of Waterloo have developed a new theory that suggests the universe's rapid early expansion could emerge naturally from a deeper, more complete theory of quantum gravity. This approach offers a unified picture that connects the earliest moments of the universe to modern cosmology.

SourceUniversity of Waterloo·JournalPhysical Review Letters·TypeData/statistical analysis·DateMar 26, 2026

The ultra-high-energy neutrino may have begun its journey in blazars

A new study suggests that the ultra-high-energy neutrino may have originated from a population of blazars, which could provide a plausible explanation for the rare phenomenon. The researchers used a combination of simulations and observations from various instruments to test their hypothesis.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateMar 9, 2026

Illinois and UChicago physicists develop a new method to measure the expansion rate of the universe

A team of researchers from Illinois and UChicago has developed a novel way to compute the Hubble constant using gravitational waves, improving accuracy over prior methods. The new method uses background gravitational-wave hum from merging black holes in distant galaxies to learn about the age and composition of the universe.

SourceUniversity of Illinois Grainger College of Engineering·JournalPhysical Review Letters·DateFeb 24, 2026

‘Death by a thousand cuts’: Young galaxy ran out of fuel as black hole choked off supplies

Astronomers have spotted an ancient galaxy that was slowly starved of fuel by a supermassive black hole. The galaxy's lack of cold gas prevented it from forming new stars, despite its relatively young age. Repeated episodes of heating and gas removal by the black hole likely drained the galaxy's fuel in as little as 16-220 million years.

SourceUniversity of Cambridge·JournalNature Astronomy·DateJan 12, 2026

Scientists find evidence dark matter and neutrinos may interact, challenging standard model of the universe

Researchers found evidence that dark matter and neutrinos interact, offering a rare glimpse into the universe's darkest regions. The study casts doubt on the long-standing cosmological model, suggesting interactions between dark matter and neutrinos could explain a discrepancy in cosmic structure formation.

SourceUniversity of Sheffield·JournalNature Astronomy·TypeData/statistical analysis·DateJan 7, 2026

K-DRIFT pathfinder: A compact telescope for observing faint galactic structures

The K-DRIFT pathfinder telescope, a compact off-axis freeform three-mirror system, has been developed to capture faint galactic structures. With its improved performance, the telescope achieves higher resolution and sharper images, paving the way for uncovering the hidden history of galaxy formation and evolution.

SourceSPIE--International Society for Optics and Photonics·JournalJournal of Astronomical Telescopes Instruments and Systems·TypeExperimental study·DateDec 9, 2025

A speed camera for the universe

Astronomers at the University of Tokyo use time-delay cosmography to measure the universe's expansion rate, finding a result consistent with current-day observations. The method exploits gravitational lensing to improve models of cosmic expansion and potentially resolve the Hubble tension.

SourceUniversity of Tokyo·JournalAstronomy and Astrophysics·TypeObservational study·DateDec 4, 2025

Our solar system is moving faster than expected

A study from Bielefeld University reveals that the solar system is moving more than three times faster than predicted by current models. This deviation was detected using data from radio galaxies, which emit strong radio waves and can penetrate dust and gas.

SourceBielefeld University·JournalPhysical Review Letters·TypeObservational study·DateNov 13, 2025

Universe's expansion 'is now slowing, not speeding up'

A new study published in Monthly Notices of the Royal Astronomical Society suggests that the universe's expansion may have started to slow rather than accelerate at an ever-increasing rate. The findings cast doubt on the long-standing theory of dark energy, which is believed to be driving distant galaxies away increasingly faster.

SourceRoyal Astronomical Society·JournalMonthly Notices of the Royal Astronomical Society·DateNov 5, 2025

‘Messy’ galaxies in the early universe struggled to settle

Researchers used the James Webb Space Telescope to study young galaxies in the early universe, finding most were turbulent and 'clumpy'. Despite this chaos, galaxy dynamics show a gradual transition towards ordered structures, suggesting that galaxies like our Milky Way formed through frequent mergers and bursts of star formation.

SourceUniversity of Cambridge·JournalMonthly Notices of the Royal Astronomical Society·DateOct 21, 2025

Can we hear gravitational-wave "beats" in the rhythm of pulsars?

Researchers propose a method to distinguish between nanohertz gravitational wave sources using pulsar timing arrays. By searching for beat phenomena in the tiny shifts of pulsars' radio-pulse arrival times, scientists can identify specific, nearby binary supermassive black hole systems.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateOct 15, 2025

Mapping the universe just got easier

The new emulator Effort.jl allows researchers to analyze complex data sets faster and more efficiently than ever before. It uses state-of-the-art numerical methods and clever preprocessing strategies to achieve exceptional computational performance, making it possible to explore cosmic scenarios without waiting hours for each simulation.

SourceUniversity of Waterloo·JournalJournal of Cosmology and Astroparticle Physics·TypeComputational simulation/modeling·DateSep 30, 2025

Mapping the Universe, faster and with the same accuracy

Researchers have developed an emulator called Effort.jl that mimics the behavior of large-scale structure models, allowing for fast analysis on standard laptops. The new model delivers similar accuracy as the original, enabling scientists to analyze upcoming data releases from experiments like DESI and Euclid.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateSep 16, 2025

Reconsidering the cosmological constant

Researchers Josh Frieman and Anowar Shajib found that physics-based models for evolving dark energy better explain current data than the standard model. The data suggests that dark energy density has decreased by about 10% over the last several billion years, changing the cosmic expansion history.

Supernovae: How to spot them at record speed

Astronomers have developed a protocol to detect supernovae within 24 hours of their explosion, using high-cadence sky surveys. The method involves rapid searches for candidates based on light signal absence and galaxy location, followed by spectroscopic observations to determine the type of supernova.

SourceSissa Medialab·JournalJournal of Cosmology and Astroparticle Physics·TypeData/statistical analysis·DateAug 19, 2025

Galactic Rosetta Stone: Study measuring magnetic field near the center of the Milky Way helps to decode the precise astrophysical dynamics at the heart of our galaxy

Researchers measured magnetic field of Sagittarius C, a region in the Central Molecular Zone, to understand interaction between dense clouds, star formation, and strong magnetic field. The study found that the magnetic field wraps around an expanding central bubble of hot, ionized gas created by massive young stars.

SourceUniversity of Chicago·JournalThe Astrophysical Journal·DateAug 12, 2025