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Device-independent quantum informati...
~
Arnon-Friedman, Rotem.
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Device-independent quantum information processing = a simplified analysis /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Device-independent quantum information processing/ by Rotem Arnon-Friedman.
其他題名:
a simplified analysis /
作者:
Arnon-Friedman, Rotem.
出版者:
Cham :Springer International Publishing : : 2020.,
面頁冊數:
xvi, 217 p. :ill., digital ;24 cm.
內容註:
Introduction -- Preliminaries: Basics and Notation -- Preliminaries: Device-independent Concepts -- Introduction to the Showcases -- Single-round Box -- Multi-round Box -- Working Under the IID Assumption -- Reductions to IID: Parallel Interaction -- Reductions to IID: Sequential Interaction -- Showcase: Non-signalling Parallel Repetition -- Showcase: Device-independent Quantum Cryptography -- Outlook -- Appendix.
Contained By:
Springer Nature eBook
標題:
Quantum communication - Security measures. -
電子資源:
https://doi.org/10.1007/978-3-030-60231-4
ISBN:
9783030602314
Device-independent quantum information processing = a simplified analysis /
Arnon-Friedman, Rotem.
Device-independent quantum information processing
a simplified analysis /[electronic resource] :by Rotem Arnon-Friedman. - Cham :Springer International Publishing :2020. - xvi, 217 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction -- Preliminaries: Basics and Notation -- Preliminaries: Device-independent Concepts -- Introduction to the Showcases -- Single-round Box -- Multi-round Box -- Working Under the IID Assumption -- Reductions to IID: Parallel Interaction -- Reductions to IID: Sequential Interaction -- Showcase: Non-signalling Parallel Repetition -- Showcase: Device-independent Quantum Cryptography -- Outlook -- Appendix.
Device-independent quantum cryptography is a method for exchanging secret messages over potentially insecure quantum communication channels, such as optical fibers. In contrast to conventional quantum cryptography, security is guaranteed even if the devices used by the communication partners, such as photon sources and detectors, deviate from their theoretical specifications. This is of high practical relevance, for attacks to current implementations of quantum cryptography exploit exactly such deviations. Device-independent cryptography is however technologically so demanding that it looked as if experimental realizations are out of reach. In her thesis, Rotem Arnon-Friedman presents powerful information-theoretic methods to prove the security of device-independent quantum cryptography. Based on them, she is able to establish security in a parameter regime that may be experimentally achievable in the near future. Rotem Arnon-Friedman's thesis thus provides the theoretical foundations for an experimental demonstration of device-independent quantum cryptography.
ISBN: 9783030602314
Standard No.: 10.1007/978-3-030-60231-4doiSubjects--Topical Terms:
3452559
Quantum communication
--Security measures.
LC Class. No.: TK5102.94 / .A766 2020
Dewey Class. No.: 003.54
Device-independent quantum information processing = a simplified analysis /
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Introduction -- Preliminaries: Basics and Notation -- Preliminaries: Device-independent Concepts -- Introduction to the Showcases -- Single-round Box -- Multi-round Box -- Working Under the IID Assumption -- Reductions to IID: Parallel Interaction -- Reductions to IID: Sequential Interaction -- Showcase: Non-signalling Parallel Repetition -- Showcase: Device-independent Quantum Cryptography -- Outlook -- Appendix.
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Device-independent quantum cryptography is a method for exchanging secret messages over potentially insecure quantum communication channels, such as optical fibers. In contrast to conventional quantum cryptography, security is guaranteed even if the devices used by the communication partners, such as photon sources and detectors, deviate from their theoretical specifications. This is of high practical relevance, for attacks to current implementations of quantum cryptography exploit exactly such deviations. Device-independent cryptography is however technologically so demanding that it looked as if experimental realizations are out of reach. In her thesis, Rotem Arnon-Friedman presents powerful information-theoretic methods to prove the security of device-independent quantum cryptography. Based on them, she is able to establish security in a parameter regime that may be experimentally achievable in the near future. Rotem Arnon-Friedman's thesis thus provides the theoretical foundations for an experimental demonstration of device-independent quantum cryptography.
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