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New parallel gate entangles diamond qubits 10 times faster at room temperature

Quantum technologies rely on qubits, units of information that can exist in combinations of the states 0 and 1 instead of being limited to one or the other like conventional bits. Qubits can become entangled, which means their states…

Phys.org Quantum Physics

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Oct 1, 2026 at 12:40 PM UTC · 1 min read

New parallel gate entangles diamond qubits 10 times faster at room temperature
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Quantum technologies rely on qubits, units of information that can exist in combinations of the states 0 and 1 instead of being limited to one or the other like conventional bits. Qubits can become entangled, which means their states become linked in ways that cannot be explained by considering each qubit separately.

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Originally reported by Phys.org Quantum Physics

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