A Superconductor’s Hidden Identity Revealed
Insider Brief PRESS RELEASE — Sometimes, the biggest scientific discoveries come from looking more closely at something we thought we already understood. For decades, physicists h...
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Insider Brief PRESS RELEASE — Sometimes, the biggest scientific discoveries come from looking more closely at something we thought we already understood. For decades, physicists h...
Author(s): Marric StephensResearchers have made the first definitive measurements of an elusive superconducting state.[Physics 19, s106] Published Wed Aug 19, 2026
Under pressure, the van der Waals heavy-fermion metal CeSiI loses magnetic order and enters an unconventional superconducting state near quantum criticality.
An experiment designed to settle a long-running debate made superconductivity disappear completely - and left physicists with a powerful new clue.
Author(s): Marric StephensResearchers have identified the reason a high-pressure, high-temperature superconductor outperforms other similar compounds.[Physics 19, s109] Published T...
“Re-entrant” superconductivity discovered in a 2D material for the first time The post Magnetic field first kills superconductor, then brings it back to life appeared first on Phys...
Two strongly coupled superconducting states can disguise themselves as a single energy gap in ultrathin materials. Two ultrathin superconductors appeared to have a simple internal...
Researchers at the University of Manchester's National Graphene Institute, led by lead author Julien Barrier and corresponding authors Professor Sir Andre Geim and Professor Alexey...
Researchers engineered vacuum fluctuations around an ultrathin material, enhancing superconductivity and enabling new control over nanoscale quantum materials.
For decades, superconductivity has been treated as a property controlled primarily by temperature, magnetic fields, chemical composition and pressure. A new experiment now suggests...
A new method keeps ultra-thin superconductors stable in air, making them easier to manufacture for quantum computers and sensors. Researchers at MIT, working with collaborators fro...
Scientists have uncovered an unusual form of electron behavior in zirconium pentatelluride, a quantum material that can act as both an insulator and a conductor. Under temperatures...
MIT researchers, together with collaborators from Harvard University, Rice University, Yale University, MIT Lincoln Laboratory and Pohang University in South Korea, have developed...
Two-dimensional superconductors have long been viewed as promising building blocks for next-generation quantum technologies, but their practical use has been limited by a stubborn...
Author(s): Efthimios KaxirasNew experiments suggest that superconductivity in twisted bilayer graphene depends on an unconventional electron-pairing mechanism.[Physics 19, 114] Pub...
Author(s): Ryan WilkinsonA key property of superconductors called superfluid stiffness can now be measured in a wide range of 2D systems.[Physics 19, s103] Published Tue Aug 11, 20...
Insider Brief Researchers have experimentally demonstrated a new type of superconducting quantum circuit that reproduces a long-predicted gauge symmetry believed to be a key ingred...
A puzzling physics mystery solved.ScienceAlert stories are written, fact-checked, and edited by humans, never generated by AI. Don't miss a story, subscribe here.
Insider Brief PRESS RELEASE — In May, a study was published in Nature Communications that identified an unusual regime of quantum oscillations in a three-dimensional topological in...
Superionic conductors blur the boundary between solids and liquids by enabling certain ions to move extraordinarily fast while the material’s overall crystal framework remains inta...
MIT physicists found that two electronic phases inside the same quantum material emerge through surprisingly different mechanisms—one smoothly and the other in expanding pockets re...
Experiments and theoretical analysis show that under extreme magnetic fields, electrons in zirconium pentatelluride behave in an unusual way that points to a topological origin rat...
A tiny superconducting engine has successfully converted heat near absolute zero into useful work, demonstrating the first cyclic quantum heat engine of its kind. Future versions c...
Topological crystalline insulator research has reached a long-awaited milestone: Finnish physicists built the first 2D version of this quantum … Source
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