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Diverse methods and practical aspects in controlling single semiconductor qubits: a review

Authors: Jia-Ao Peng; Chu-Dan Qiu; Wen-Long Ma; Jun-Wei Luo

DOI: 10.1088/1674-4926/24120040Status: Verified Translated Edition
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Key Findings in This Report

• Semiconductor qubits are a leading candidate for scalable quantum technologies due to compatibility with existing microelectronics. • The review covers five major quantum control methods: resonant excitation, adiabatic passage, shortcuts to adiabaticity, composite pulses, and quantum optimal control. • Practical implementation of these methods enables high-precision and noise-resilient quantum gates for various single semiconductor qubit types. • The paper provides a comprehensive guide for researchers to select appropriate control techniques for specific qubit architectures.