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Extreme pressure pushes honeycomb crystal toward quantum spin liquid, hinting at new qubit designs
The future of computing lies in the surprising world of quantum physics, where the rules are much different from the ones ...
Scientists are closer to creating a quantum spin liquid, a state where electron spins stay dynamic even at near absolute zero ...
When you shine a flashlight into a glass of water, the beam bends. That simple observation, familiar since ancient times, ...
Made out of a fluorescent protein, the qubit is just 3 nanometers in diameter, scientists report August 20 in Nature. By hitting the protein with laser light, tweaking it with microwaves and observing ...
Researchers have achieved a major breakthrough by generating quantum spin currents in graphene—without relying on bulky magnetic fields. By pairing graphene with a magnetic material, they unlocked a ...
Researchers at QuTech, the interfaculty quantum technology research institute of Delft University of Technology, have now demonstrated a highly precise universal set of quantum gates using a diamond ...
Scientists have created an artificial intelligence tool called SCIGEN that can potentially speed up the hunt for novel ...
In the rapidly evolving field of quantum computing, silicon spin qubits are emerging as a leading candidate for building scalable, fault-tolerant quantum computers. A new review titled ...
An international team of scientists led by Rice's Pengcheng Dai has confirmed the existence of emergent photons and fractionalized spin excitations in a rare quantum spin liquid. An international team ...
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Quantum spin currents in graphene without external magnetic fields pave way for ultra-thin spintronics
Scientists from TU Delft (The Netherlands) have observed quantum spin currents in graphene for the first time without using magnetic fields. These currents are vital for spintronics, a faster and more ...
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