dorsal/arxiv
View SchemaScalable Error Correction in Distributed Ion Trap Computers
| Authors | Daniel K. L. Oi, Simon J. Devitt, Lloyd C. L. Hollenberg |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/0606226 |
| URL | https://arxiv.org/abs/quant-ph/0606226 |
| DOI | 10.1103/PhysRevA.74.052313 |
| Journal | Phys. Rev. A. 74,052313 (2006) |
Abstract
A major challenge for quantum computation in ion trap systems is scalable integration of error correction and fault tolerance. We analyze a distributed architecture with rapid high fidelity local control within nodes and entangled links between nodes alleviating long-distance transport. We demonstrate fault-tolerant operator measurements which are used for error correction and non-local gates. This scheme is readily applied to linear ion traps which cannot be scaled up beyond a few ions per individual trap but which have access to a probabilistic entanglement mechanism. A proof-of-concept system is presented which is within the reach of current experiment.
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"abstract": "A major challenge for quantum computation in ion trap systems is scalable\nintegration of error correction and fault tolerance. We analyze a distributed\narchitecture with rapid high fidelity local control within nodes and entangled\nlinks between nodes alleviating long-distance transport. We demonstrate\nfault-tolerant operator measurements which are used for error correction and\nnon-local gates. This scheme is readily applied to linear ion traps which\ncannot be scaled up beyond a few ions per individual trap but which have access\nto a probabilistic entanglement mechanism. A proof-of-concept system is\npresented which is within the reach of current experiment.",
"arxiv_id": "quant-ph/0606226",
"authors": [
"Daniel K. L. Oi",
"Simon J. Devitt",
"Lloyd C. L. Hollenberg"
],
"categories": [
"quant-ph"
],
"doi": "10.1103/PhysRevA.74.052313",
"journal_ref": "Phys. Rev. A. 74,052313 (2006)",
"title": "Scalable Error Correction in Distributed Ion Trap Computers",
"url": "https://arxiv.org/abs/quant-ph/0606226"
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