Exact solution for the quantum and private capacities of bosonic dephasing channels
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| Publication date | 06-2023 |
| Journal | Nature Photonics |
| Volume | Issue number | 17 | 6 |
| Pages (from-to) | 525-530 |
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| Abstract |
The capacities of noisy quantum channels capture the ultimate rates of information transmission across quantum communication lines, and the quantum capacity plays a key role in determining the overhead of fault-tolerant quantum computation platforms. Closed formulae for these capacities in bosonic systems were lacking for a key class of non-Gaussian channels, bosonic dephasing channels, which are used to model noise affecting superconducting circuits and fibre-optic communication channels. Here we provide an exact calculation of the quantum, private, two-way assisted quantum and secret-key-agreement capacities of all bosonic dephasing channels. We prove that they are equal to the relative entropy of the distribution underlying the channel with respect to the uniform distribution, solving a problem that was originally posed over a decade ago.
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| Document type | Article |
| Note | With Supplementary Information |
| Language | English |
| Published at | https://doi.org/10.1038/s41566-023-01190-4 |
| Other links | https://www.scopus.com/pages/publications/85151716145 |
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Exact solution for the quantum and private capacities of bosonic dephasing channels
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| Supplementary materials | |
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