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Science Magnet
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- 1Radio Waves From Alien Planet Could Be Cosmic First▼Radio Waves Coming From an Alien Planet May Be a Cosmic First https://www.nytimes.com/2026/09/29/science/space/exoplanet
Astronomers report detecting radio waves that may originate from an exoplanet, potentially the first such detection ever made. If confirmed, the signal would suggest the distant planet has a magnetic field, a property never directly observed on a world outside our solar system. The finding is drawing attention from space and astronomy enthusiasts following coverage by major science outlets, with researchers emphasising that further observations are needed to verify the origin of the emission.
- 2UCF Researcher Finds Evidence of New Type of Magnetism▼University of Central Florida researcher discovers experimental evidence of new type of magnetism
A researcher at the University of Central Florida reports experimental evidence of a new type of magnetism, according to a news release. The discovery could expand scientific understanding of magnetic materials beyond known categories such as ferromagnetism and antiferromagnetism. Details of the underlying mechanism and potential technological applications have not been widely reported yet.
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Brazil's CNPEM research centre and CERN are working together on magnet technology for a proposed 91-kilometre particle collider. The collaboration ties Brazilian scientific institutions into CERN's long-term plans for next-generation accelerator hardware, an area where magnet performance is a core technical challenge. The partnership highlights growing international participation in future collider projects.
- 4Planck Image Maps the Milky Way's Magnetic Field●Our Galaxy's Magnetic Field from Planck Credits: ESA, Planck, CNRS, IAS, U. Paris-XI # nature # space # astrophotography
A striking image of the Milky Way's magnetic field, based on data from the European Space Agency's Planck satellite, is circulating among space enthusiasts. The map shows polarised light from galactic dust tracing the galaxy's magnetic field lines, credited to ESA, Planck, CNRS, IAS and Paris-XI University. It is being shared as an example of the beauty and value of astrophotography and public space science data.
- 5Could Earth's Magnetic Field Be Influencing How We Age?●Could Earth’s Magnetic Field Be Secretly Influencing How We Age? https:// scitechdaily.com/could-earths- magnetic-field-
A new article explores whether Earth's magnetic field may play a hidden role in biological ageing. The piece discusses research into how geomagnetism could interact with living organisms, potentially affecting ageing processes. The claim is generating curiosity, with readers debating whether there is solid evidence behind the idea or whether it remains speculative science.
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The SMILE satellite has ended an 18-year gap in observations of the northern lights, and researchers say new views of Earth's x-ray magnetic shield are just weeks away. The mission is expected to provide fresh insight into how the solar wind interacts with Earth's magnetic field, producing auroras. Space science outlets are highlighting the milestone and the images anticipated in the coming weeks.
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Astronomers have reported detecting a radio signal from Beta Pictoris b, a giant exoplanet orbiting the young star Beta Pictoris about 63 light-years from Earth. The observation, covered by science outlets, is drawing attention because radio emissions from a planet beyond the solar system could offer a new way to study exoplanets' magnetic fields and atmospheres.
- 8
The European Space Agency has announced that the Smile mission has officially begun its science operations. Smile, a joint solar-weather mission, is designed to study how solar wind interacts with Earth's magnetic field. The start of the science phase means the spacecraft has completed commissioning and is now collecting data, a milestone space agencies and researchers have been following closely.
- 9Scientists detect radio signals from planet outside Solar System▼Scientists have detected radio signals from a planet beyond our Solar System
Astronomers report the detection of radio signals originating from a planet orbiting a star beyond our Solar System. The finding, covered by science media including BBC Sky at Night Magazine, is being discussed as a rare example of radio emission linked to an exoplanet, potentially opening a new way to study magnetic fields and conditions on distant worlds.
- 10Mysterious X-ray flashes traced to cataclysmic stellar mergers●Enigmatic flashes of x-rays in the sky may come from the catastrophic merger of two stars, creating an ultra-dense and u
Astronomers report that enigmatic flashes of X-rays in the sky may come from the catastrophic merger of two stars, producing an ultra-dense, ultra-magnetic remnant known as a magnetar. The findings emerged from a collaboration between Chinese and European science missions, and are drawing attention among space researchers and enthusiasts discussing what the discovery reveals about how magnetars form.
- 11Scientists push superconductors beyond usual current limit▼Scientists just pushed superconductors beyond their usual current limit
Researchers report they have pushed superconductors past their usual current limit, a threshold that has long constrained how much current superconducting materials can carry before losing zero resistance. The advance, covered by science outlets, could matter for technologies that rely on powerful superconducting magnets, such as MRI machines, particle accelerators and fusion reactors. Details of the method and how broadly it can be applied remain limited.
- 12Sunrise-III observatory reveals intricate solar magnetic structures▼Stratospheric observatory Sunrise-III reveals intricate solar magnetic structures
The stratospheric research observatory Sunrise-III has returned new observations revealing intricate magnetic structures on the Sun. Flying high above most of Earth's atmosphere, the observatory captured detailed measurements of solar magnetic fields, findings now reported by science outlets and the Japanese astronomical institute NAOJ. Researchers say the data offers an unusually sharp view of the fine-scale magnetic processes driving solar activity.
- 13Physicists identify new 'octupolar' form of magnetism▼Physicists identify 'octupolar' magnetism, with implications for quantum technologies
Physicists report the identification of 'octupolar' magnetism, a newly characterised magnetic order that goes beyond conventional dipole-based magnetism. According to the report, the discovery could have implications for quantum technologies, where exotic magnetic states are explored for use in future computing and sensing devices. Details of the underlying research, the team behind it and the peer-review status have not yet been widely reported, so the scale and significance of the finding remain to be confirmed.
- 14Light, Not Material, May Hold Key to Better Magnetic Memory▼The Secret to Better Magnetic Memory May Be the Light, Not the Material
Researchers suggest that the key to improving magnetic memory may lie in how light is used rather than in the magnetic material itself. The finding could point to new ways of designing faster, more efficient data storage by tuning light-based control of magnetism, drawing attention across the physics and materials science communities.