Graphene

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Physicists at MIT have observed direct evidence of unconventional superconductivity in magic-angle twisted tri-layer graphene, revealing a distinctive V-shaped energy gap. This breakthrough suggests electron pairing driven by strong interactions rather than lattice vibrations. The findings, published in Science, could pave the way for room-temperature superconductors.

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Researchers at TU Wien have discovered that electrons escaping from solid materials require specific 'doorway states' beyond just sufficient energy, resolving long-standing experimental anomalies. This finding, published in Physical Review Letters, explains variations in electron emission from layered materials like graphene. The insight opens new possibilities for engineering advanced materials.

Donnerstag, 09. Oktober 2025, 00:29 Uhr

Electrons in graphene reach supersonic speeds for first time

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