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A perspective on semiconductor-based superconducting qubits
DOI:10.1063/5.0024124.png)
Abstract
En 中文
Following the demonstration of semiconductor-based Josephson junctions, which are fully tunable by electrical means, new routes have been opened for the study of hybrid semiconductor-superconductor qubits. These include semiconductor-based transmon qubits, single-spin Andreev qubits, and fault-tolerant topological qubits based on Majorana zero modes. In this perspective, we review recent progress in the path toward such hybrid qubit designs. After a short introduction and a brief digression about the historical roadmap that has led to the experimental state-of-the-art, the emphasis is placed on superconducting qubits based on semiconductor nanowires.
Keywords:
ANDREEV BOUND-STATES
SUPERCURRENT
QUANTIZATION
SPECTROSCOPY
JUNCTIONS
GAP
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