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Disorder is key to tuning a high-temperature superconductor

Cornell physicists have discovered that minimizing disorder, not varying electron count, is the key factor for controlling superconductivity in the unique material iron selenide (FeSe), a new insight for understanding high-temperature ...

High magnetic fields revive superconductivity in nickelates

Scientists from the National University of Singapore (NUS), in collaboration with Los Alamos National Laboratory in the United States, have uncovered that a class of nickel-based materials known as samarium (Sm)-based infinite-layer ...

Krypton gas emerges as a new ingredient for quantum computing

To commercialize quantum computing, manufacturers need high-quality superconducting materials for microchips, but they also require a reliable, sustainable nanofabrication process. Tantalum is a corrosion-resistant metal ...

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New superconductors identified, unlocking process that could yield thousands more
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Graphene can hold multiple states of superconductivity, a new study finds
Superconductivity
Seven exotic quantum phases predicted in ultracold magnetic atoms, including topological superconductivity
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Nearly isotropic superconducting property revealed in trilayer nickelate
Condensed Matter
A magnetic field that kills superconductivity can also bring it back
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Broken time-reversal symmetry phase in kagome metals may establish conditions for superconductivity
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Research uncovers novel electronic properties in quantum material
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Topological states emerge in quantum Hall-superconductor devices with multiple channels
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Quantum teleportation carries microwave states at temperatures up to 4 K, beating classical limit
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Surface-only superconductor is the strangest of its kind

Something strange goes on inside the material platinum-bismuth-two (PtBi₂). A new study by researchers at IFW Dresden and the Cluster of Excellence ct.qmat demonstrates that while PtBi₂ may look like a typical shiny gray ...

New cable design mitigates flaws in superconducting wires

When current flows through a wire, it doesn't always have a perfect path. Tiny defects within the wire mean current must travel a more circuitous route, a problem for engineers and manufacturers seeking reliable equipment.