Approximate Programmable Quantum Processors in Infinite Dimensions
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A universal programmable quantum processor uses program quantum states to apply an arbitrary quantum channel to an input state. We generalize the concept of a finite-dimensional programmable quantum processor to infinite dimensions assuming an energy constraint on the input and output of the target quantum channels. Upper and lower bounds for the required program dimension, to approximately implement energy-limited quantum channels, are provided. In particular, we consider the implementation of Gaussian channels. Due to their practical relevance, we investigate the resource requirements for gauge covariant Gaussian channels. Additionally, we give upper and lower bounds for the program dimension of a processor implementing all Gaussian unitary channels.
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- W3110046781
- Document type
- preprint
- Language
- EN
- Source
- arXiv (Cornell University)
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