Using new methods in astronomy, researchers have identified the most precise ages of red giant stars in the galaxy, shedding light on the timing of the early Milky Way's formation. The study suggests that the merger with the satellite galaxy Gaia-Enceladus occurred around 10 billion years ago.
SourceOhio State University·JournalNature Astronomy·DateMay 17, 2021
Researchers have dated the oldest stars in our galaxy with unprecedented precision by combining data from their oscillations with information about their chemical composition. The team found that these ancient stars were originally part of a satellite galaxy called Gaia-Enceladus, which collided with the Milky Way early in its history.
SourceUniversity of Birmingham·JournalNature Astronomy·DateMay 17, 2021
Astronomers have developed a new tool to investigate the structure of invisible inter-cluster magnetic fields in galaxies. The technique uses jets of high-energy particles emitted from massive black holes to create detailed maps of these magnetic fields.
SourceNational Institutes of Natural Sciences·JournalNature·DateMay 5, 2021
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SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.
Astronomers used ALMA to discover a rotating baby galaxy, providing insights into the early Universe. The galaxy, RXCJ0600-z6, is about 1/100th the size of the Milky Way and has a mass of 2-3 billion times that of our Sun.
SourceNational Institutes of Natural Sciences·DateApr 22, 2021
A new study has found that norovirus clusters are resistant to detergent and ultraviolet disinfection, suggesting a need to revisit current disinfection practices. The clusters can survive attempts to kill them with standard disinfectants, including UV light used in water treatment plants.
SourceGeorge Washington University·JournalEnvironmental Science & Technology·DateApr 15, 2021
Researchers at the Dark Energy Survey combined data on matter distribution, galaxies, and galaxy clusters to refine estimates of dark matter and dark energy. This analysis provides more precise estimates of the average density of matter and its clumpiness, which are crucial parameters for understanding these mysterious substances.
SourceDOE/SLAC National Accelerator Laboratory·JournalPhysical Review Letters·DateApr 6, 2021
The discovery of four double quasars offers insights into galaxy formation and the evolution of supermassive black holes. Quasars are brilliant beacons that can outshine entire galaxies, and their proximity in merging galaxies provides a unique window into the early universe.
Researchers analyzed 25,766 film tropes and identified 42 cluster groups, with some associated with specific genres and high ratings. The study provides insights into the film industry's narrative patterns, potentially informing new film development and story generation.
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Meta Quest 3 512GB enables immersive mission planning, terrain rehearsal, and interactive STEM demos with high-resolution mixed-reality experiences.
The EHT collaboration has revealed a new view of the massive object at the centre of the M87 galaxy, measuring polarisation and magnetic field lines just outside the black hole. This new data is key to understanding how the M87 galaxy launches energetic jets from its core.
SourceRadboud University Nijmegen·JournalThe Astrophysical Journal Letters·DateMar 24, 2021
A team of astronomers used a natural cosmic lens to magnify the light from a distant radio galaxy, detected for the first time using the VLA. The discovery provides valuable insights into star formation in low-mass galaxies at early universe ages.
SourceNational Radio Astronomy Observatory·JournalThe Astrophysical Journal·DateMar 16, 2021
Researchers have made groundbreaking discoveries about the formation of galaxies and stars using data from the Atacama Cosmology Telescope. By analyzing microwave observations, they found that only a small percentage of gas in galaxies (about 10%) is turned into stars, shedding light on why galaxy formation remains inefficient.
SourceCornell University·JournalPhysical Review D·DateMar 15, 2021
The LAMOST survey has identified 1534 low-α metal-rich member stars of the Gaia-Sausage-Enceladus galaxy, challenging previous understanding of the merging process. The newly discovered component extends from a previously detected metal-poor region and suggests that these stars were formed during subsequent evolution.
The HAWC Gamma Ray Observatory has discovered the origin of the highest-energy cosmic rays in the galaxy, which are traced to the Cygnus OB2 star-forming region. This breakthrough resolves a long-standing question in astrophysics and sheds light on the mechanisms that accelerate these particles to petaelectronVolt energies.
SourceDOE/Los Alamos National Laboratory·JournalNature Astronomy·DateMar 11, 2021
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A new study led by IAC researchers using the OSIRIS instrument on GRANTECAN has discovered the most densely populated galaxy cluster in formation in the primitive universe. The cluster, located 12.5 billion light years from us, is made up of galaxies with normal star formation rates and is predicted to evolve into a Virgo-like cluster.
SourceInstituto de Astrofísica de Canarias (IAC)·JournalMonthly Notices of the Royal Astronomical Society·DateFeb 26, 2021
Astronomers have detected streams of cold gas flowing through the dark matter halo of an early massive galaxy, supplying materials for star formation. The discovery provides direct evidence for cosmic filaments ferrying cold gas to galaxies during the early universe.
Research reveals large galaxies steal molecular gas from smaller satellite galaxies, impacting star formation rates. The study provides new systematic evidence of gas loss through ram pressure stripping, leading to galaxy stagnation without gas acquisition.
SourceInternational Centre for Radio Astronomy Research·JournalMonthly Notices of the Royal Astronomical Society·DateFeb 22, 2021
Scientists have challenged our current understanding of how galaxies form by unveiling pictures of a young galaxy with an unexpected appearance. ALESS 073.1 appears to have features expected of a mature galaxy, leading the team to question how it grew so fast.
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Astrophysicists at MIT have discovered an extended dark matter halo around Tucana II, a primitive ultrafaint dwarf galaxy. The halo is estimated to be three to five times more massive than previously thought, implying that the first galaxies in the universe were likely larger and more massive.
SourceMassachusetts Institute of Technology·JournalNature Astronomy·DateFeb 1, 2021
A combination of observational data and computer simulations have yielded advances in understanding intracluster light, a faint type of light found inside galaxy clusters. The results suggest that ICL might provide a new way to measure dark matter.
SourceDOE/Fermi National Accelerator Laboratory·DateJan 27, 2021
Researchers found three regimes in gold plasmonic evolution: classical plasmon for large clusters, quantum confinement corrected plasmon for medium-sized clusters, and molecular plasmon for small clusters. The study uses atomic precision to understand the boundary between bulk, nano and molecule scale of gold plasmonic physics.
SourceScience China Press·JournalNational Science Review·DateJan 14, 2021
Astronomers have discovered a distant galaxy that erupts roughly every 114 days, creating a 'cosmic Old Faithful'. Using data from NASA's Neil Gehrels Swift Observatory and Transiting Exoplanet Survey Satellite, scientists studied repeated outbursts of an event called ASASSN-14ko.
A new study by Durham University and colleagues suggests that galaxy mergers could shut down star formation in the early universe, affecting galaxy growth. The researchers observed a massive galaxy, ID2299, which ejected half of its gas into the intergalactic medium due to the merger.
SourceDurham University·JournalNature Astronomy·DateJan 11, 2021
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Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C) keeps Macs, tablets, and meters powered during extended observing runs and remote surveys.
Astronomers using ALMA have observed a distant galaxy losing its ability to form stars after ejecting nearly half of its star-forming gas. The galaxy's gas ejection is happening at an alarming rate, equivalent to 10,000 Suns-worth per year.
Researchers measured pulsar accelerations to clock star motions, revealing tiny accelerations at a few centimeters per second. This opens a new window into galactic dynamics and provides clues in the search for dark matter.
The Hubble imaging Probe of Extreme Environments and Clusters (HiPEEC) survey investigates how star clusters form and evolve during galaxy mergers. The study reveals large and rapid variations in star cluster properties, with the most massive clusters formed towards the end of the merger phase.
SourceESA/Hubble Information Centre·JournalMonthly Notices of the Royal Astronomical Society·DateJan 7, 2021
Researchers confirm the distance of the most-distant galaxy GN-z11 to 13.4 billion light-years, improving understanding of star and galaxy formation in the early universe. The discovery also reveals an ultraviolet flash associated with a gamma-ray burst, providing insights into cosmic reionization.
SourceCarnegie Institution for Science·JournalNature Astronomy·DateDec 16, 2020
Astronomers use a novel spectrograph to measure the redshift of GN-z11, a ancient galaxy located 13.4 billion light years away, marking it as the farthest detectable galaxy in the universe. The team's precise measurement improves the accuracy of the galaxy's distance by a factor of 100.
SourceUniversity of Tokyo·JournalNature Astronomy·DateDec 14, 2020
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Sky-Watcher EQ6-R Pro Equatorial Mount provides precise tracking capacity for deep-sky imaging rigs during long astrophotography sessions.
A new study using VERA data has revised Earth's velocity around the Galactic Center from 220 km/s to 227 km/s, making it faster. The revised calculation places Earth approximately 2000 light-years closer to the supermassive black hole at the Galaxy's center.
SourceNational Institutes of Natural Sciences·JournalPublications of the Astronomical Society of Japan·DateNov 30, 2020
Researchers at University of Kansas discover a galaxy 5.25 billion light years away undergoing a rare stage in its life cycle, where an X-ray luminous AGN coexists with high star formation rates. The team found that the galaxy is still generating new stars despite the presence of the active galactic nucleus.
A team of astrophysicists has created a complete family tree of the Milky Way, revealing a previously unknown galaxy collision that permanently altered its appearance. The researchers used advanced computer simulations and artificial intelligence to study the merger history of the galaxy.
SourceHeidelberg University·JournalMonthly Notices of the Royal Astronomical Society·DateNov 23, 2020
A recent study reveals that the Milky Way galaxy is being warped and twisted by the gravitational force of the Large Magellanic Cloud, a smaller galaxy that crossed its boundary 700 million years ago. The effects are still being witnessed today and should force a revision of how our galaxy evolved.
SourceUniversity of Edinburgh·JournalNature Astronomy·DateNov 23, 2020
Astronomers used the VLA to study how a crowded environment affects galaxies in the Perseus Cluster. The research reveals complex filamentary structures in radio lobes and bending of jets due to motion through intergalactic material, providing new insights into galaxy clusters.
SourceNational Radio Astronomy Observatory·JournalMonthly Notices of the Royal Astronomical Society·DateNov 12, 2020
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Apple AirPods Pro (2nd Generation, USB-C) provide clear calls and strong noise reduction for interviews, conferences, and noisy field environments.
Researchers found that galaxy clusters today are 4 million degrees Fahrenheit, 10 times hotter than 10 billion years ago. The team used data from telescopes and space missions to measure the temperature of gas concentrations over time, confirming a theory about dark matter.
Researchers from the University of Michigan found that the vast majority of field massive stars in the Small Magellanic Cloud are 'runaways,' or stars ejected from clusters. They discovered that these stars could have formed in isolation or were dynamically ejected due to unstable orbital configurations.
SourceUniversity of Michigan·JournalThe Astrophysical Journal·DateOct 30, 2020
Researchers at Rensselaer Polytechnic Institute have discovered the first shell-like formations of stars in the Milky Way, created by a 2.7 billion-year-old broadside collision with a dwarf galaxy. The findings offer new insights into the ancient event and its potential implications for other stellar phenomena.
SourceRensselaer Polytechnic Institute·JournalThe Astrophysical Journal·DateOct 20, 2020
The Milky Way's circumgalactic medium (CGM) has a disk-like geometry, with denser areas where stars are forming and material is being traded between the galaxy and the CGM. The discovery provides insight into the galaxy's formation and evolution, as well as its interaction with the surrounding universe.
SourceUniversity of Iowa·JournalNature Astronomy·DateOct 19, 2020
Astronomers at the University of Vienna used machine learning to trace groups of stars born together and found thousands of sibling stars surrounding well-known cores of star clusters. The discovery reveals that star clusters are enclosed in rich halos, or coronae, more than 10 times larger than previously thought.
SourceUniversity of Vienna·JournalAstronomy and Astrophysics·DateOct 15, 2020
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Researchers have found a globular star cluster with 800 times less iron than the Sun and is three times more iron-poor than the previous record-holder. The study contradicts the standard picture of how these old star clusters formed in the early universe.
SourceW. M. Keck Observatory·JournalScience·DateOct 15, 2020
Researchers have discovered a massive globular cluster in the Andromeda Galaxy with an unusually low metallicity, challenging current theories on GC formation. The cluster's metallicity is nearly three times lower than previously known limits, suggesting that massive clusters could form from pristine gas in the early Universe.
SourceAmerican Association for the Advancement of Science (AAAS)·JournalScience·DateOct 15, 2020
Astronomers find galaxy Dragonfly 44 has normal amount of dark matter, contrary to earlier claims. The team discovered only 20 globular clusters, reducing the amount of dark matter, and confirming that the galaxy is not unique or anomalous.
SourceInstituto de Astrofísica de Canarias (IAC)·JournalMonthly Notices of the Royal Astronomical Society·DateOct 13, 2020
The NASA/ESA Hubble Space Telescope has captured a stunning image of the Great Barred Spiral Galaxy NGC 1365, showcasing hundreds of baby stars and dusty sites of future stellar nurseries. The PHANGS survey, conducted jointly with ALMA in Chile, aims to understand how galaxy environments influence star formation.
A team led by UC Riverside scientists determines that matter makes up 31% of the total amount of matter and energy in the universe. The researchers used a novel method to measure the mass of galaxy clusters, finding a best combined value of 31.5±1.3%.
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Researchers discovered neutral Co13O8 clusters with cubic structure and large HOMO-LUMO gap, exhibiting remarkable thermal stability and aromaticity. These 'metalloxocubes' are expected to become suitable candidates for genetic materials.
SourceScience China Press·JournalNational Science Review·DateSep 16, 2020
A new study by Yale astrophysicist Priyamvada Natarajan and colleagues found that the smaller dollops of dark matter associated with cluster galaxies are significantly more concentrated than predicted by theorists. The discovery implies a possible gap in scientists' understanding of dark matter.
Researchers found far more small-scale dark matter gravitational lenses in galaxy clusters than predicted by standard cosmology. The discovery suggests either an issue with simulation methods or incorrect assumptions about dark matter's nature.
SourceAmerican Association for the Advancement of Science (AAAS)·JournalScience·DateSep 10, 2020
Astronomers have discovered a discrepancy between theoretical models and Hubble observations of galaxy clusters, suggesting a potential gap in our understanding of dark matter. The study used unprecedentedly detailed observations to map the distribution of dark matter on small scales.
SourceNASA/Goddard Space Flight Center·JournalScience·DateSep 10, 2020
Astronomers used NASA/ESA Hubble Space Telescope and VLT to map dark matter distribution in galaxy clusters. The data showed unexpected lensing effects 10 times stronger than expected, hinting at a missing ingredient in current theories.
SourceESA/Hubble Information Centre·JournalScience·DateSep 10, 2020
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Celestron NexStar 8SE Computerized Telescope combines portable Schmidt-Cassegrain optics with GoTo pointing for outreach nights and field campaigns.
A study led by UC Riverside physicist Hai-Bo Yu suggests that the self-interacting dark matter theory explains why two galaxies contain less dark matter than expected. The researchers used sophisticated simulations to show that tidal stripping of the satellite galaxies' mass can occur, leading to a decrease in dark matter content.
SourceUniversity of California - Riverside·JournalPhysical Review Letters·DateSep 9, 2020
The discovery of radio jets in the Phoenix Galaxy Cluster suggests that a supermassive black hole is actively heating intra-cluster gas, preventing star formation. This finding has significant implications for our understanding of galaxy evolution and coevolution.
SourceNational Institutes of Natural Sciences·JournalPublications of the Astronomical Society of Japan·DateAug 31, 2020
A team of scientists using NASA's Hubble Space Telescope has mapped the immense envelope of gas surrounding the Andromeda galaxy, our nearest large galactic neighbor. The study reveals a layered structure with two main shells of gas, and sheds light on the fuel for future star formation and outflows from supernovae.
Astronomers studied the galaxy's radio structure using VLBA, revealing a striking TIE fighter shape at 6.6 GHz. The team observed two periods of activity in TXS 0128+554, suggesting a lull in activity created a gap in the radio emission.
Daily surveillance of emerging COVID-19 hotspots reveals smaller but more numerous clusters nationwide. The study uses innovative space-time statistics to detect geographic areas with elevated risk of contracting the virus.
SourceUniversity of Utah·JournalSpatial and Spatio-temporal Epidemiology·DateAug 20, 2020
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Rigol DP832 Triple-Output Bench Power Supply powers sensors, microcontrollers, and test circuits with programmable rails and stable outputs.
A research team at Cornell University created nanoclusters that can self-assemble and mimic the complex structures of DNA, RNA, and proteins. The clusters have three levels of organization with an interlocking, chiral design, making them potential candidates for metabolic and enzymatic processes.
SourceCornell University·JournalJournal of the American Chemical Society·DateAug 20, 2020
Researchers have discovered a dense, cold gas ejected from the centre of the Milky Way, which could impact star formation and galaxy stability. The finding raises new questions about what's happening in the galactic centre, particularly with regards to the massive black hole at its heart.
SourceAustralian National University·JournalNature·DateAug 19, 2020
Astronomers using ALMA have discovered the most distant Milky Way look-alike galaxy, SPT0418-47, which is surprisingly unchaotic and appears as a ring of light in the sky. The discovery challenges our understanding of how galaxies form and gives new insights into the past of the Universe.
Astronomers used machine learning to discover a rare galaxy with an oxygen abundance of 1.6% solar levels, setting a new record. The galaxy is thought to be in its early stages of formation, contradicting standard cosmology predictions.
SourceNational Institutes of Natural Sciences·DateJul 31, 2020
Fluke 87V Industrial Digital Multimeter
Fluke 87V Industrial Digital Multimeter is a trusted meter for precise measurements during instrument integration, repairs, and field diagnostics.
Astronomers have found a strange dismembered star cluster at the galaxy's edge, with lower quantities of heavier elements than other globular clusters. The discovery poses significant problems for current ideas on globular cluster origins.
Researchers analyzed the magnetic field of Milky Way-like galaxy NGC 4217 and discovered unique structures such as X-shaped fields, helices, superbubbles, and giant loops. These findings suggest a connection between star formation and supernovae explosions in shaping the galaxy's magnetic field.
Researchers use VLA radio telescope to image galaxy NGC 4217's magnetic field, extending far beyond the galaxy's disk. The dynamo theory suggests that this massive magnetic field is generated by plasma motion within the galaxy's disk.
Researchers propose a simple model explaining galaxy quenching, attributing it to central black hole 'feedback' that disrupts gas supply. The model reveals that larger galaxies evolve further before their black holes can grow large enough to quench star formation.
SourceUniversity of California - Santa Cruz·DateJul 15, 2020