Published February 23, 2022
| Version v1
Journal article
Open
Building a Fault-Tolerant Quantum Computer Using Concatenated Cat Codes
Creators
-
Chamberland, Christopher1
- Noh, Kyungjoo1
- Arrangoiz-Arriola, Patricio1
- Campbell, Earl T.1
-
Hann, Connor T.1
- Iverson, Joseph1
- Putterman, Harald1
- Bohdanowicz, Thomas C.1
- Flammia, Steven T.1
- Keller, Andrew1
- Refael, Gil1
- Preskill, John1
- Jiang, Liang2
- Safavi-Naeini, Amir H.1
- Painter, Oskar1
- Brandão, Fernando G. S. L.1
- 1. AWS Center for Quantum Computing
- 2. University of Chicago
Description
We present a comprehensive architectural analysis for a proposed fault-tolerant quantum computer based on cat codes concatenated with outer quantum error-correcting codes. For the physical hardware, we propose a system of acoustic resonators coupled to superconducting circuits with a two-dimensional layout. Using estimated physical parameters for the hardware, we perform a detailed error analysis of measurements and gates, including cnot and Toffoli gates. Having built a realistic noise model, we numerically simulate quantum error correction when the outer code is either a repetition code or a thin rectangular surface code. Our next step toward universal fault-tolerant quantum computation is a protocol for fault-tolerant Toffoli magic state preparation that significantly improves upon the fidelity of physical Toffoli gates at very low qubit cost. To achieve even lower overheads, we devise a new magic state distillation protocol for Toffoli states. Combining these results together, we obtain realistic full-resource estimates of the physical error rates and overheads needed to run useful fault-tolerant quantum algorithms. We find that with around 1000 superconducting circuit components, one could construct a fault-tolerant quantum computer that can run circuits, which are currently intractable for classical computers. Hardware with 18 000 superconducting circuit components, in turn, could simulate the Hubbard model in a regime beyond the reach of classical computing.
Files
PRXQuantum.3.010329.pdf
Files
(9.3 MB)
| Name | Size | Download all |
|---|---|---|
|
Article md5:7b2bbe99447752394e5685d8257d5203 |
9.3 MB | Preview Download |
Additional details
Identifiers
- DOI
- 10.1103/PRXQuantum.3.010329
- Other
- oai:uchicago.tind.io:11478