Applied Physics Letters · 2016 · 23 citations · 22 references
Deterministic ControlCategoryquantum ElectronicsEngineeringAntimony DonorsSilicon On InsulatorQuantum SensingSilicon Quantum DotsSemiconductor NanostructuresSemiconductorsQuantum ComputingQuantum DotsSiliceneQuantum ControlQuantum ElectronicsMaterials ScienceQuantum SciencePhysicsNanotechnologyQuantum DeviceAtomic PhysicsSemiconductor MaterialSemiconductor Device FabricationFocused Ion BeamQuantum TransducersSpintronicsQuantum TechnologyNanomaterialsApplied PhysicsQuantum DevicesQuantum Hardware
Deterministic control over the location and number of donors is crucial to donor spin quantum bits (qubits) in semiconductor based quantum computing. In this work, a focused ion beam is used to implant antimony donors in 100 nm × 150 nm windows straddling quantum dots. Ion detectors are integrated next to the quantum dots to sense the implants. The numbers of donors implanted can be counted to a precision of a single ion. In low-temperature transport measurements, regular Coulomb blockade is observed from the quantum dots. Charge offsets indicative of donor ionization are also observed in devices with counted donor implants.
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