20 citations · 35 across the 6 of their papers we have counts for
4 papers · 1 filter
Geometric formalism for constructing arbitrary single-qubit dynamically corrected gates
Junkai Zeng, C. H. Yang, A. S. Dzurak +1
Implementing high-fidelity quantum control and reducing the effect of the coupling between a quantum system and its environment is a major challenge in developing quantum informati…
High-fidelity and robust two-qubit gates for quantum-dot spin qubits in silicon
Chia-Hsien Huang, C. H. Yang, Chien-Chang Chen +2
A two-qubit controlled-NOT (CNOT) gate, realized by a controlled-phase (C-phase) gate combined with single-qubit gates, has been experimentally implemented recently for quantum-dot…
Fidelity benchmarks for two-qubit gates in silicon
W. Huang, C. H. Yang, K. W. Chan +10
Universal quantum computation will require qubit technology based on a scalable platform, together with quantum error correction protocols that place strict limits on the maximum i…
Assessment of a silicon quantum dot spin qubit environment via noise spectroscopy
K. W. Chan, W. Huang, C. H. Yang +8
Preserving coherence long enough to perform meaningful calculations is one of the major challenges on the pathway to large scale quantum computer implementations. Noise coupled fro…