Physical Review Applied · 2016 · 39 citations · 31 references
EngineeringMagnetic ResonanceReadout StructuresQuantum SensingSingle-shot Dispersive ReadoutSpin StateQuantum ComputingSingle-lead Quantum DotHigh-sensitivity Charge DetectionQuantum EntanglementQuantum ScienceElectrical EngineeringPhysicsQuantum DeviceQuantum AlgorithmMicroelectronicsSpintronicsNatural SciencesApplied PhysicsScalable Quantum ComputationQuantum Algorithms
A promising route toward large-scale quantum information processing is to use as qubits the spin states of individual phosphorus atoms in silicon. One challenge in making this system scalable, though, is to fit control and readout structures---which are necessarily bigger than the single-atom qubits---into a device at the same length scale. Combining rf measurement techniques with ultraprecise lithography, this study presents a charge sensor that can be fabricated at the atomic scale, needs only one electrical lead, and is capable of the sensitivity needed for single-shot dispersive readout of a lone electron's spin state.
31
Quantum computation with quantum dots
Daniel Loss, David P. DiVincenzo · Physical Review A · 1998 · 6.7K citations · Full text
A silicon-based nuclear spin quantum computer
B. E. Kane · Nature · 1998 · 3.7K citations
Spins in few-electron quantum dots
Ronald Hanson, Leo P. Kouwenhoven, J. R. Petta et al. · Reviews of Modern Physics · 2007 · 2.6K citations · Full text
Electron transport through double quantum dots
Wilfred G. van der Wiel, S. De Franceschi, J. M. Elzerman et al. · Reviews of Modern Physics · 2002 · 1.8K citations · Full text
Single-shot read-out of an individual electron spin in a quantum dot
J. M. Elzerman, Ronald Hanson, L. H. Willems van Beveren et al. · Nature · 2004 · 1.6K citations · Full text