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Oval orbit casts new light on black hole-neutron star merger
Large area MoS2 reduces energy loss in magnetic memory films
Forty years' data give unique insight into Sun’s inner life
What does ’flexibility’ actually look like?
New details about dark matter’s influence on universe
Mysterious ’Mars bar’ discovered in famous Ring Nebula
Physics
Results 1 - 6 of 6.
Astronomy & Space - Physics - 11.03.2026

Breakthrough discovery provides new clues about how these celestial bodies - that push the known laws of physics to their limits - find each other. Scientists have uncovered the first robust evidence of a black hole and neutron star crashing together but orbiting in an oval path rather than a perfect circle just before they merged.
Physics - Materials Science - 06.03.2026

Scientists at the University of Manchester have discovered that placing magnetic films on atomically thin molybdenum disulfide (MoS2) fundamentally changes how they lose energy, a finding that could bring 2D-material spintronics a step closer to real devices. The team found that growing a widely used magnetic alloy, permalloy, on ultra-thin MoS2 alters the film's internal crystal structure, changing how and where energy is lost as magnetic spins move.
Astronomy & Space - Physics - 04.03.2026

Scientists reveal that even small differences in solar magnetic activity produce detectable changes inside the Sun. Scientists have analysed more than 40 years of astronomical data to uncover evidence that the Sun's internal structure subtly changes from one solar cycle minimum to the next. Publishing their findings in Monthly Notices of the Royal Astronomical Society , researchers from the University of Birmingham and Yale University reveal that even small differences in solar magnetic activity produce detectable changes inside the Sun.
Chemistry - Physics - 19.02.2026

Flexible electronics are often sold on a simple promise: bendable screens, lightweight solar cells or wearable devices that can bend and flex without breaking. But what does that 'flexibility' actually look like at the molecular scale, and how does it affect performance? Researchers led by the University of Cambridge say they have taken a first step towards answering this question.
Astronomy & Space - Physics - 26.01.2026

Scientists using data from the James Webb Space Telescope have made one of the most detailed high-resolution maps of dark matter ever produced. It shows how the invisible, ghostly material overlaps and intertwines with 'regular' matter, the stuff that makes up stars, galaxies, and everything we can see.
Astronomy & Space - Physics - 16.01.2026

A mysterious bar-shaped cloud of iron has been discovered inside the iconic Ring Nebula by a European team of astronomers. The cloud of iron atoms, described for the first time in Monthly Notices of the Royal Astronomical Society , just fits inside the inner layer of the elliptically shaped nebula - a colourful shell of gas thrown off by a star as it ends the nuclear fuel-burning phase of its life.