Science & Environment

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

Source: Phys.org - latest science and technology news stories · Published

New parallel gate entangles diamond qubits 10 times faster at room temperature
Source: Phys.org - latest science and technology news stories

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

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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Exploring the shapes of exotic nuclei
Science & Environment

Exploring the shapes of exotic nuclei

In the conventional diagram of an atom, the center depicts a nucleus—a spherical cluster of protons and neutrons. But that sphere is a simplification: nuclei can deform into exotic shapes that appear more like a pear, football or Frisbee. Understanding why and when nuclei distort

Phys.org - latest science and technology news stories ·