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- W2962974908 abstract "Abstract Quantum dots patterned by atomically precise placement of phosphorus donors in single crystal silicon have long spin lifetimes, advantages in addressability, large exchange tunability, and are readily available few-electron systems. To be utilized as quantum bits, it is important to non-invasively characterise these donor quantum dots post fabrication and extract the number of bound electron and nuclear spins as well as their locations. Here, we propose a metrology technique based on electron spin resonance (ESR) measurements with the on-chip circuitry already needed for qubit manipulation to obtain atomic scale information about donor quantum dots and their spin configurations. Using atomistic tight-binding technique and Hartree self-consistent field approximation, we show that the ESR transition frequencies are directly related to the number of donors, electrons, and their locations through the electron-nuclear hyperfine interaction." @default.
- W2962974908 created "2019-07-30" @default.
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- W2962974908 date "2016-08-23" @default.
- W2962974908 modified "2023-09-25" @default.
- W2962974908 title "Characterizing Si:P quantum dot qubits with spin resonance techniques" @default.
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- W2962974908 doi "https://doi.org/10.1038/srep31830" @default.
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