An economical route to one-way quantum computation

We assess the effects of a realistic intrinsic model for imperfections in cluster states by introducing noisy cluster states and characterizing their role in the one-way computational model. A suitable strategy to counter-affect these non-idealities is represented by the use of small clusters, strip...

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Main Authors: Tame, MS, Paternostro, M, Kim, MS, Vedral, V
格式: Journal article
語言:English
出版: 2006
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author Tame, MS
Paternostro, M
Kim, MS
Vedral, V
author_facet Tame, MS
Paternostro, M
Kim, MS
Vedral, V
author_sort Tame, MS
collection OXFORD
description We assess the effects of a realistic intrinsic model for imperfections in cluster states by introducing noisy cluster states and characterizing their role in the one-way computational model. A suitable strategy to counter-affect these non-idealities is represented by the use of small clusters, stripped of any redundancy, which leads to the search for compact schemes for one-way quantum computation. In light of this, we quantitatively address the behavior of a simple four-qubit cluster which simulates a controlled-NOT under the influences of our model for decoherence. Our scheme can be particularly useful in an all-optical setup and the strategy we address can be directly applied in those experimental situations where small cluster states can be constucted. © 2006 World Scientific Publishing Company.
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spelling oxford-uuid:a64d8d98-0ce2-4417-a79b-d8c7ccda182d2022-03-27T02:46:20ZAn economical route to one-way quantum computationJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:a64d8d98-0ce2-4417-a79b-d8c7ccda182dEnglishSymplectic Elements at Oxford2006Tame, MSPaternostro, MKim, MSVedral, VWe assess the effects of a realistic intrinsic model for imperfections in cluster states by introducing noisy cluster states and characterizing their role in the one-way computational model. A suitable strategy to counter-affect these non-idealities is represented by the use of small clusters, stripped of any redundancy, which leads to the search for compact schemes for one-way quantum computation. In light of this, we quantitatively address the behavior of a simple four-qubit cluster which simulates a controlled-NOT under the influences of our model for decoherence. Our scheme can be particularly useful in an all-optical setup and the strategy we address can be directly applied in those experimental situations where small cluster states can be constucted. © 2006 World Scientific Publishing Company.
spellingShingle Tame, MS
Paternostro, M
Kim, MS
Vedral, V
An economical route to one-way quantum computation
title An economical route to one-way quantum computation
title_full An economical route to one-way quantum computation
title_fullStr An economical route to one-way quantum computation
title_full_unstemmed An economical route to one-way quantum computation
title_short An economical route to one-way quantum computation
title_sort economical route to one way quantum computation
work_keys_str_mv AT tamems aneconomicalroutetoonewayquantumcomputation
AT paternostrom aneconomicalroutetoonewayquantumcomputation
AT kimms aneconomicalroutetoonewayquantumcomputation
AT vedralv aneconomicalroutetoonewayquantumcomputation
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AT kimms economicalroutetoonewayquantumcomputation
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