Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution

The effects of open system evolution on single particle interferometry, quantum computation, and the adiabatic approximation are investigated. Single particle interferometry: Three concepts concerning completely positive maps (CPMs) and trace preserving CPMs (channels), named subspace preserving (SP...

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Main Author: Åberg, Johan
Format: Doctoral Thesis
Language:English
Published: Uppsala universitet, Avdelningen för kvantkemi 2005
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-5893
http://nbn-resolving.de/urn:isbn:91-554-6307-X
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-58932013-01-08T13:04:08ZOpen Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic EvolutionengÅberg, JohanUppsala universitet, Avdelningen för kvantkemiUppsala : Acta Universitatis Upsaliensis2005PhysicsOpen SystemsCompletely Positive MapsChannelsDecoherenceQuantum InformationQuantum ComputingAdiabatic ApproximationQuantum SearchTime-ComplexityFysikPhysicsFysikThe effects of open system evolution on single particle interferometry, quantum computation, and the adiabatic approximation are investigated. Single particle interferometry: Three concepts concerning completely positive maps (CPMs) and trace preserving CPMs (channels), named subspace preserving (SP) CPMs, subspace local channels, and gluing of CPMs, are introduced. SP channels preserve probability weights on given orthogonal sum decompositions of the Hilbert space of a quantum system. Subspace locality determines what channels act locally with respect to such decompositions. Gluings are the possible total channels obtainable if two evolution devices, characterized by channels, act jointly on a superposition of a particle in their inputs. It is shown that gluings are not uniquely determined by the two channels. We determine all possible interference patterns in single particle interferometry for given channels acting in the interferometer paths. It is shown that the standard interferometric setup cannot distinguish all gluings, but a generalized setup can. Quantum computing: The robustness of local and global adiabatic quantum search subject to decoherence in the instantaneous eigenbasis of the search Hamiltonian, is examined. In both the global and local search case the asymptotic time-complexity of the ideal closed case is preserved, as long as the Hamiltonian dynamics is present. In the case of pure decoherence, where the environment monitors the search Hamiltonian, it is shown that the local adiabatic quantum search performs as the classical search with scaling N, and that the global search scales like N3/2 , where N is the list length. We consider success probabilities p<1 and prove bounds on the run-time with the same scaling as in the conditions for the p → 1 limit. Adiabatic evolution: We generalize the adiabatic approximation to the case of open quantum systems in the joint limit of slow change and weak open system disturbances. Doctoral thesis, comprehensive summaryinfo:eu-repo/semantics/doctoralThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-5893urn:isbn:91-554-6307-XDigital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Science and Technology, 1651-6214 ; 77application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Physics
Open Systems
Completely Positive Maps
Channels
Decoherence
Quantum Information
Quantum Computing
Adiabatic Approximation
Quantum Search
Time-Complexity
Fysik
Physics
Fysik
spellingShingle Physics
Open Systems
Completely Positive Maps
Channels
Decoherence
Quantum Information
Quantum Computing
Adiabatic Approximation
Quantum Search
Time-Complexity
Fysik
Physics
Fysik
Åberg, Johan
Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution
description The effects of open system evolution on single particle interferometry, quantum computation, and the adiabatic approximation are investigated. Single particle interferometry: Three concepts concerning completely positive maps (CPMs) and trace preserving CPMs (channels), named subspace preserving (SP) CPMs, subspace local channels, and gluing of CPMs, are introduced. SP channels preserve probability weights on given orthogonal sum decompositions of the Hilbert space of a quantum system. Subspace locality determines what channels act locally with respect to such decompositions. Gluings are the possible total channels obtainable if two evolution devices, characterized by channels, act jointly on a superposition of a particle in their inputs. It is shown that gluings are not uniquely determined by the two channels. We determine all possible interference patterns in single particle interferometry for given channels acting in the interferometer paths. It is shown that the standard interferometric setup cannot distinguish all gluings, but a generalized setup can. Quantum computing: The robustness of local and global adiabatic quantum search subject to decoherence in the instantaneous eigenbasis of the search Hamiltonian, is examined. In both the global and local search case the asymptotic time-complexity of the ideal closed case is preserved, as long as the Hamiltonian dynamics is present. In the case of pure decoherence, where the environment monitors the search Hamiltonian, it is shown that the local adiabatic quantum search performs as the classical search with scaling N, and that the global search scales like N3/2 , where N is the list length. We consider success probabilities p<1 and prove bounds on the run-time with the same scaling as in the conditions for the p → 1 limit. Adiabatic evolution: We generalize the adiabatic approximation to the case of open quantum systems in the joint limit of slow change and weak open system disturbances.
author Åberg, Johan
author_facet Åberg, Johan
author_sort Åberg, Johan
title Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution
title_short Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution
title_full Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution
title_fullStr Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution
title_full_unstemmed Open Quantum Systems : Effects in Interferometry, Quantum Computation, and Adiabatic Evolution
title_sort open quantum systems : effects in interferometry, quantum computation, and adiabatic evolution
publisher Uppsala universitet, Avdelningen för kvantkemi
publishDate 2005
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-5893
http://nbn-resolving.de/urn:isbn:91-554-6307-X
work_keys_str_mv AT abergjohan openquantumsystemseffectsininterferometryquantumcomputationandadiabaticevolution
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