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Quantum entanglement of anisotropic magnetic nanodots
14
Citations
21
References
2004
Year
Quantum ScienceMagnetismAnisotropic Magnetic NanodotsEngineeringQuantum ComputingPhysicsMany-body Quantum PhysicNatural SciencesMagnetic NanodotsQuantum DeviceApplied PhysicsMagnetic ResonanceQuantum EntanglementQuantum Magnetism
Anisotropic magnetic nanodots are promising physical realizations of qubits for quantum computing at finite temperature owing to their well-separated low-lying energy levels and scalability. The entanglement of two interacting magnetic nanodots is investigated and shown both analytically and numerically to be resonantly dependent on their interaction strength and on differences in their properties. These results provide criteria for fabricating and coupling magnetic nanodots so that their low-lying eigenstates can be significantly entangled.
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