A ferroelectric shunt capacitor on a transmon qubit supplies an extra control knob for anharmonicity while remaining in the charge-insensitive regime.
Wendin, Quantum information processing with su- perconducting circuits: a review, Reports on Progress in Physics80, 106001 (2017)
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Superconducting diodes can provide built-in nonlinearity, nonreciprocity, and quantum features to support scalable, integrated superconducting quantum circuits with improved thermal compatibility.
Magnetic domain walls are positioned as a platform for scalable quantum computation architectures leveraging their quantum effects and mobility.
citing papers explorer
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Ferroelectric transmon
A ferroelectric shunt capacitor on a transmon qubit supplies an extra control knob for anharmonicity while remaining in the charge-insensitive regime.
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Quantum Landscape of Superconducting Diodes
Superconducting diodes can provide built-in nonlinearity, nonreciprocity, and quantum features to support scalable, integrated superconducting quantum circuits with improved thermal compatibility.
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Perspective: Quantum Computing on Magnetic Racetrack
Magnetic domain walls are positioned as a platform for scalable quantum computation architectures leveraging their quantum effects and mobility.