Publication | Closed Access
Quantum Spintronics: Engineering and Manipulating Atom-Like Spins in Semiconductors
737
Citations
56
References
2013
Year
EngineeringEntangled StatesSpintronic MaterialQuantum SensingSpin DynamicSpin PhenomenonQuantum EngineeringQuantum ComputingQuantum SpintronicsQuantum MaterialsQuantum ControlCoherence TimesQuantum EntanglementQuantum SciencePhysicsQuantum DeviceQuantum InformationQuantum DecoherenceSpintronicsSpin Coherence TimesQuantum TechnologyNatural SciencesApplied PhysicsCondensed Matter Physics
The past decade has seen remarkable progress in isolating and controlling quantum coherence using charges and spins in semiconductors. Quantum control has been established at room temperature, and electron spin coherence times now exceed several seconds, a nine-order-of-magnitude increase in coherence compared with the first semiconductor qubits. These coherence times rival those traditionally found only in atomic systems, ushering in a new era of ultracoherent spintronics. We review recent advances in quantum measurements, coherent control, and the generation of entangled states and describe some of the challenges that remain for processing quantum information with spins in semiconductors.
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