An international research team led by scientists from the Chinese Academy of Sciences (CAS) has discovered an isolated pulsar located within the tidal tail of NGC 6791, one of the oldest and most massive open clusters in the Milky Way. By combining observations from the Five-hundred-meter Aperture Spherical radio Telescope (FAST), the MeerKAT radio telescope and the Canada-France-Hawaii Telescope
Space & AstronomyAstronomy#Chinese Academy of Sciences#Research News#astronomy#astrophysics
In the vast cosmos, supernova explosions are widely regarded as the most brilliant fireworks in the universe. Among them, Type Ia supernovae (SNe Ia) are hailed as "standard candles" due to their highly consistent peak luminosity, making them a key tool for measuring cosmic distances. However, a recent study has found that even SNe Ia that appear nearly identical may hide small "genetic" differenc
Space & AstronomyAstronomy#Chinese Academy of Sciences#Research News#astronomy#astrophysics
Are the large-scale magnetic fields of magnetars dominated by a dipolar structure, or is a significant magnetic-field twist required to explain the observations? A recent study by researchers from the Xinjiang Astronomical Observatory (XAO) of the Chinese Academy of Sciences (CAS) has found that the observed X-ray polarization of two magnetars can be explained by dipole-dominated magnetic fields,
Space & AstronomyAstronomy#Chinese Academy of Sciences#Research News#astronomy#astrophysics
With a twist between layers of graphene, scientists supported by the DOE’s Office of Science created the foundation for twistronics.
FeaturesSpace & AstronomyTechnology & Innovation#DOE#Office of Science#astronomy#astrophysics#advanced materials#innovation#Oak Ridge National Laboratory#Lawrence Berkeley National Laboratory
The BESIII Collaboration, led by the Institute of High Energy Physics of the Chinese Academy of Sciences, has achieved the world's most precise measurement of the electric dipole moment (EDM) of the Lambda (Λ) hyperon using quantum-entangled Λ–anti-Λ pairs produced in J/ψ decays. The result improves the experimental sensitivity by about three orders of magnitude compared with the previous measurem
Space & AstronomyTechnology & InnovationParticle Physics#Chinese Academy of Sciences#Research News#Particle Physics#astronomy#astrophysics#advanced materials#innovation#Fermilab
Active galactic nuclei (AGN), powered by accreting supermassive black holes, and X-ray binaries (XRBs), powered by accreting neutron stars or stellar-mass black holes, are two representative classes of compact accreting systems. Relativistic collimated jets are among the most spectacular phenomena in these systems. Understanding how these powerful outflows are launched, accelerated, and collimated
Space & AstronomyAstronomy#Chinese Academy of Sciences#Research News#astronomy#astrophysics
The LUX-ZEPLIN, or LZ, experiment has reported a compelling result in its search for dark matter. Although the result doesn't meet the statistical threshold for claiming a discovery of dark matter, LZ's international research team, including members from the University of Michigan, cannot currently explain it with known background signals.
Space & AstronomyParticle Physics#University of Michigan#News Releases#Science & Technology#Dark matter#particle#Physics#Michigan News#astronomy
The LUX-ZEPLIN experiment observed an unusual particle interaction, but researchers will need more data to confirm.
FeaturesSpace & AstronomyParticle Physics#DOE#Office of Science#astronomy#astrophysics#Particle Physics#High Energy Physics#Lawrence Berkeley National Laboratory
The universe has been having fewer and fewer stellar "babies". Over the past 4.5 billion years, the rate of star birth has crashed to less than half of what it once was. But here's the twist: the most essential "fuel" for making stars has barely decreased. This finding comes from an international team led by researchers from the Chinese Academy of Sciences (CAS), in collaboration with the Dark Ene
Space & AstronomyTelescopesSatellites#Chinese Academy of Sciences#Research News#Telescopes#Satellites#astronomy#astrophysics
The research team will study a range of planets beyond our solar system, from rocky planets similar in size to Earth to planets that are several times larger, but smaller than Neptune. These worlds are called sub-Neptunes and are the most abundant type of planet in the galaxy. One popular theory suggests that they contain large amounts of water and are often referred to as "water worlds."
Space & AstronomyEnvironment & Climate#University of Michigan#Environment#News Releases#Research to Watch#Science & Technology#exoplanets#Michigan News#astronomy
Research NewsUniversity of Minnesota Medical School
An interdisciplinary Medical School team is studying whether renal denervation can offer a new option for patients whose high blood pressure remains uncontrolled on medication.
Space & AstronomyMedical ResearchResearch#University of Minnesota Medical School#UMN Medical School#Faculty#Patient Care#research#astronomy#astrophysics#medical research
Space & AstronomyWashington University in St. Louis
Ahead of the scheduled Aug. 30 launch of NASA’s Nancy Grace Roman Space Telescope, several Washington University in St. Louis researchers have been selected to play important roles in the mission’s inaugural science program. The Roman telescope promises to transform our understanding of the universe. NASA will use the Roman telescope to investigate dark energy, discover thousands of exoplanets and
Space & AstronomySpace#Washington University in St. Louis#Newsroom#astronomy#astrophysics
A research team from the Shanghai Astronomical Observatory (SHAO) of the Chinese Academy of Sciences (CAS) has discovered that satellite galaxies retain a measurable "kinematic memory" of matter flowing into and along cosmic filaments. Using a large spectroscopic sample from the Sloan Digital Sky Survey (SDSS) , the team found that satellite galaxies preferentially orbit within planes that contain
Space & AstronomyAstronomy#Chinese Academy of Sciences#Research News#astronomy#astrophysics
Technology & InnovationUniversity of Wisconsin-Milwaukee
The UWM Research Foundation has awarded $250,000 in new Catalyst Grant funding to five research teams at UW-Milwaukee that are advancing technologies in artificial intelligence, energy systems, cybersecurity and advanced materials.
Energy Infrastructure#University of Wisconsin-Milwaukee#UWM Report#research#Science & Technology#grid#energy security