Entanglement quantification and quantum benchmarking of optical communication devices

In this thesis, we develop a number of operational tests and tools for benchmarking the quantum nature of optical quantum communication devices. Using the laws of quantum physics, ideal quantum devices can fundamentally outperform their classical counterparts, or even achieve objectives which are cl...

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Bibliographic Details
Main Author: Killoran, Nathan
Language:en
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10012/6662
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-66622013-10-04T04:11:22ZKilloran, Nathan2012-04-27T18:14:13Z2012-04-27T18:14:13Z2012-04-27T18:14:13Z2012http://hdl.handle.net/10012/6662In this thesis, we develop a number of operational tests and tools for benchmarking the quantum nature of optical quantum communication devices. Using the laws of quantum physics, ideal quantum devices can fundamentally outperform their classical counterparts, or even achieve objectives which are classically impossible. Actual devices will not be ideal, but they may still be capable of facilitating quantum communication. Benchmarking tests, based on the presence of entanglement, can be used to verify whether or not imperfect quantum devices offer any advantage over their classical analogs. The general goal in this thesis is to provide strong benchmarking tools which simultaneously require minimal experimental resources but also offer a wide range of applicability. Another major component is the extension of existing qualitative benchmarks (`Is it quantum or classical?') to more quantitative forms (`How quantum is it?'). We provide a number of benchmarking results applicable to two main situations, namely discrete remote state preparation protocols and continuous-variable quantum device testing. The theoretical tools derived throughout this thesis are also applied to the tasks of certifying a remote state preparation experiment and a continuous-variable quantum memory.enquantum communicationquantum opticsquantum benchmarksquantum informationentanglementEntanglement quantification and quantum benchmarking of optical communication devicesThesis or DissertationPhysics and AstronomyDoctor of PhilosophyPhysics
collection NDLTD
language en
sources NDLTD
topic quantum communication
quantum optics
quantum benchmarks
quantum information
entanglement
Physics
spellingShingle quantum communication
quantum optics
quantum benchmarks
quantum information
entanglement
Physics
Killoran, Nathan
Entanglement quantification and quantum benchmarking of optical communication devices
description In this thesis, we develop a number of operational tests and tools for benchmarking the quantum nature of optical quantum communication devices. Using the laws of quantum physics, ideal quantum devices can fundamentally outperform their classical counterparts, or even achieve objectives which are classically impossible. Actual devices will not be ideal, but they may still be capable of facilitating quantum communication. Benchmarking tests, based on the presence of entanglement, can be used to verify whether or not imperfect quantum devices offer any advantage over their classical analogs. The general goal in this thesis is to provide strong benchmarking tools which simultaneously require minimal experimental resources but also offer a wide range of applicability. Another major component is the extension of existing qualitative benchmarks (`Is it quantum or classical?') to more quantitative forms (`How quantum is it?'). We provide a number of benchmarking results applicable to two main situations, namely discrete remote state preparation protocols and continuous-variable quantum device testing. The theoretical tools derived throughout this thesis are also applied to the tasks of certifying a remote state preparation experiment and a continuous-variable quantum memory.
author Killoran, Nathan
author_facet Killoran, Nathan
author_sort Killoran, Nathan
title Entanglement quantification and quantum benchmarking of optical communication devices
title_short Entanglement quantification and quantum benchmarking of optical communication devices
title_full Entanglement quantification and quantum benchmarking of optical communication devices
title_fullStr Entanglement quantification and quantum benchmarking of optical communication devices
title_full_unstemmed Entanglement quantification and quantum benchmarking of optical communication devices
title_sort entanglement quantification and quantum benchmarking of optical communication devices
publishDate 2012
url http://hdl.handle.net/10012/6662
work_keys_str_mv AT killorannathan entanglementquantificationandquantumbenchmarkingofopticalcommunicationdevices
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