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Training microwave pulses using quantum machine learning
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Abstract
A gate sequence of single-qubit transformations may be condensed into a single microwave pulse that maps a qubit from an initialized state directly into the desired state of the composite transformation. Here, machine learning is used to learn the parameterized values for a single driving pulse associated with a transformation of three sequential gate operations on a qubit. This implies that future quantum circuits may contain roughly a third of the number of single-qubit operations performed, greatly reducing the problems of noise and decoherence. There is a potential for even greater condensation and efficiency using the methods of quantum machine learning.
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Publication details
- DOI
- 10.48550/arxiv.2409.03861
- OpenAlex
- W4403585974
- Document type
- preprint
- Language
- EN
- Source
- arXiv (Cornell University)
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