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News
Rare 99% pure graphene produced in China for advanced quantum chips
10+ hour, 36+ min ago (570+ words) This process could, one day, help scientists build more robust, noise-resistant quantum computers. Researchers from Peking University have developed a better way to make a special kind of graphene-based quantum material. If scaled and refined further, this discovery could pave…...
Researchers use graphene encapsulation to grow air-stable 2D superconductors for quantum circuits
19+ hour, 57+ min ago (901+ words) MIT researchers, together with collaborators from Harvard University, Rice University, Yale University, MIT Lincoln Laboratory and Pohang University in South Korea, have developed a technique that uses graphene to grow air-stable, wafer-scale monolayer superconductors, addressing a longstanding barrier to using…...
Boron layers could set a superconductivity record, theoretical study predicts
1+ day, 3+ hour ago (20+ words) Phys.org This site can’t be reached phys.org refused to connect....
Ultra-Thin Superconductors Can Now Stay Stable in Air
1+ day, 16+ hour ago (19+ words) A new method keeps ultra-thin superconductors stable in air, making them easier to manufacture for quantum computers and sensors....
Biaxial Strain Reshapes Bilayer Nickelates Through a Distinct Electronic Pathway
1+ day, 22+ hour ago (196+ words) Compression tunes bilayer nickelates without forcing the high-pressure phase, revealing an alternative route to the orbital and band conditions linked to superconductivity. The team applied biaxial strains ranging from compressive to tensile conditions while allowing the remaining structural parameters to…...
New ultrathin superconductors can help build more compact quantum devices
2+ day, 3+ hour ago (515+ words) Researchers involved from MIT and other places grew the superconducting material, called niobium diselenide, underneath another atomically thin material, carbon-based graphene....
Hebrew University Finds Dual Superconducting States
2+ day, 12+ hour ago (172+ words) Researchers at Hebrew University of Jerusalem used tunneling spectroscopy to reveal two hidden superconducting orders in ultrathin NbSe₂ and TaS₂—resolving a long-standing puzzle about their energy-gap behavior. The same concealed dual-state behavior was confirmed in TaS₂, a structurally analogous superconductor. “It’s a…...
Electron Orbitals Photographed in 3D Using Photoelectron Spectroscopy
2+ day, 14+ hour ago (10+ words) Technology Networks...
Air-Stable 2D Superconductors Encapsulated for Next-Generation Quantum
2+ day, 11+ hour ago (496+ words) 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 materials problem: they are often extremely vulnerable to air. A team led by researchers including X. Zheng,…...
Various quantum states arising from the interplay of electronic correlation, superconductivity, and topology in twisted graphene moiré superlattices
3+ day, 1+ hour ago (48+ words) EurekAlert! Various quantum states arising from the interplay of electronic correlation, superconductivity, and topology in twisted graphene moiré superlattices More on this News Release Twisting graphene into correlation and topology...