Multi-objective Bayesian optimization of Si-spike-enriched Ge heterostructures predicts up to 1000x stronger spin-orbit interaction and 100x better spin-qubit quality factors than state-of-the-art Ge/SiGe wells.
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2 Pith papers cite this work, alongside 363 external citations. Polarity classification is still indexing.
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A design study outlines how detector-grade Ge with ~2e14 cm^-3 In acceptors could enable a statistically selected five-qubit register with all-electrical control and manageable disorder.
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Tailoring Germanium Heterostructures for Quantum Devices with Machine Learning
Multi-objective Bayesian optimization of Si-spike-enriched Ge heterostructures predicts up to 1000x stronger spin-orbit interaction and 100x better spin-qubit quality factors than state-of-the-art Ge/SiGe wells.
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Detector-Grade Germanium as a Low-Disorder Host for Indium-Acceptor Spin Qubits: A Five-Qubit Materials-to-Architecture Design Study
A design study outlines how detector-grade Ge with ~2e14 cm^-3 In acceptors could enable a statistically selected five-qubit register with all-electrical control and manageable disorder.