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  2. Quantum entanglement - Wikipedia

    en.wikipedia.org/wiki/Quantum_entanglement

    Quantum entanglement is the phenomenon of a group of particles being generated, interacting, or sharing spatial proximity in a manner such that the quantum state of each particle of the group cannot be described independently of the state of the others, including when the particles are separated by a large distance.

  3. Multipartite entanglement - Wikipedia

    en.wikipedia.org/wiki/Multipartite_entanglement

    In the case of systems composed of > subsystems, the classification of quantum-entangled states is richer than in the bipartite case. Indeed, in multipartite entanglement apart from fully separable states and fully entangled states , there also exists the notion of partially separable states.

  4. Entanglement swapping - Wikipedia

    en.wikipedia.org/wiki/Entanglement_swapping

    This effect happens without any previous direct interaction between particles A and D. [2] [3] Entanglement swapping is a form of quantum teleportation. In quantum teleportation, the unknown state of a particle can be sent from one location to another using the combination of a quantum and classical channel.

  5. Quantum coupling - Wikipedia

    en.wikipedia.org/wiki/Quantum_coupling

    Quantum coupling is an effect in quantum mechanics in which two or more quantum systems are bound such that a change in one of the quantum states in one of the systems will cause an instantaneous change in all of the bound systems.

  6. Concurrence (quantum computing) - Wikipedia

    en.wikipedia.org/wiki/Concurrence_(Quantum...

    In quantum information science, the concurrence is a state invariant involving qubits. Definition. The concurrence is an entanglement monotone (a way of measuring ...

  7. Quantum mechanics - Wikipedia

    en.wikipedia.org/wiki/Quantum_mechanics

    Quantum mechanics is a fundamental theory that describes the behavior of nature at and below the scale of atoms. [2]: 1.1 It is the foundation of all quantum physics, which includes quantum chemistry, quantum field theory, quantum technology, and quantum information science. Quantum mechanics can describe many systems that classical physics cannot.

  8. Coincidence counting (physics) - Wikipedia

    en.wikipedia.org/wiki/Coincidence_counting_(physics)

    In these experiments two or more particles are created from the same initial packet of energy, inexorably linking/entangling their physical properties. Separate particle detectors measure the quantum states of each particle and send the resulting signal to a coincidence counter. In any experiment studying entanglement, the entangled particles ...

  9. Quantum chemistry - Wikipedia

    en.wikipedia.org/wiki/Quantum_chemistry

    Quantum chemistry, also called molecular quantum mechanics, is a branch of physical chemistry focused on the application of quantum mechanics to chemical systems, particularly towards the quantum-mechanical calculation of electronic contributions to physical and chemical properties of molecules, materials, and solutions at the atomic level. [1]

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