A Tukey-window-based smooth velocity shuttling protocol reduces valley excitations and average spin infidelity in disordered Si/SiGe quantum dots via analytical design and statistical simulations.
Tanttuet al., Assessment of the errors of high-fidelity two-qubit gates in silicon quantum dots, Nature Phys
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Review of CMOS compatibility advantages and challenges for semiconductor spin qubits aimed at enabling large-scale fault-tolerant quantum computing.
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Smooth velocity shuttling for suppressing valley excitations in disordered Si/SiGe quantum dots
A Tukey-window-based smooth velocity shuttling protocol reduces valley excitations and average spin infidelity in disordered Si/SiGe quantum dots via analytical design and statistical simulations.
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CMOS compatibility of semiconductor spin qubits
Review of CMOS compatibility advantages and challenges for semiconductor spin qubits aimed at enabling large-scale fault-tolerant quantum computing.