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- W3157029305 abstract "Charge noise is the main hurdle preventing high-fidelity operation, in particular that of two-qubit gates, of semiconductor-quantum-dot-based spin qubits. While certain sweet spots where charge noise is substantially suppressed have been demonstrated in several types of spin qubits, the existence of one for coupled singlet-triplet qubits is unclear. We theoretically demonstrate, using full configuration-interaction calculations, that a range of nearly sweet spots appear in the coupled singlet-triplet qubit system when a strong enough magnetic field is applied externally. We further demonstrate that ramping to and from the judiciously chosen nearly sweet spot using sequences based on the shortcut to adiabaticity offers maximal gate fidelities under charge noise and phonon-induced decoherence. These results should facilitate realization of high-fidelity two-qubit gates in singlet-triplet qubit systems." @default.
- W3157029305 created "2021-05-10" @default.
- W3157029305 creator A5072616606 @default.
- W3157029305 creator A5078923594 @default.
- W3157029305 creator A5083115196 @default.
- W3157029305 date "2021-04-27" @default.
- W3157029305 modified "2023-10-14" @default.
- W3157029305 title "Charge noise suppression in capacitively coupled singlet-triplet spin qubits under magnetic field" @default.
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- W3157029305 doi "https://doi.org/10.1103/physrevb.103.l161409" @default.
- W3157029305 hasPublicationYear "2021" @default.
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