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Closed timelike curves enable perfect state distinguishability~tqw~_darksiderg

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Closed timelike curves enable perfect state distinguishability~tqw~_darksiderg

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Name:Closed timelike curves enable perfect state distinguishability~tqw~_darksiderg

Infohash: C076C93880DB491C578589702148DACB267E3191

Total Size: 1.55 MB

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Stream: Watch Full Movie @ Movie4u

Last Updated: 2009-12-10 03:41:23 (Update Now)

Torrent added: 2009-08-20 19:57:51






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Announce URL: http://tracker.bitreactor.to:2710/announce

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INFO
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Title................: Closed timelike curves enable perfect state
distinguishability
Type.................: Ebook
Reader...............: PDF Reader
Size.................: 1.54 MB
Torrent Hash.........: C076C938 80DB491C 57858970 2148DACB 267E3191
Posted by............: ~tqw~

Trackers:
hxxp://tracker.bitreactor.to:2710/announce
hxxp://tracker.thepiratebay.org:80/announce

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CONTENTS
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Closed timelike curves enable perfect state distinguishability~tqw~_darksiderg preview 0
Synopsis:
The causal self-consistency condition for closed timelike curves can give
rise to nonlinear interactions on chronology-respecting qubits. We demonstrate
that particular unitary interactions between closed timelike curve qubits and
chronology-respecting qubits allow perfect distinguishability of nonorthogonal
states. As a result, an adversary with access to closed timelike curves can
break the B92, BB84, and SARG04 quantum key distribution protocols. We offer a
constructive proof for generalizing these examples to an arbitrary number of
nonorthogonal states. This generalization can thus break any
prepare-and-measure quantum key distribution scheme. Our result also implies
that a party with access to closed timelike curves can violate the Holevo
bound by accessing more than log(N) bits of information from an N-dimensional
quantum state.

Table Of Contents:
This is a essay, I really enjoyed this. Mayebe you will to.

Product Details:
Todd A. Brun, Jim Harrington, and Mark M. Wilde
N/A

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Greetz Fellow UL'ers
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A Very Special Shout Out To The DSRG Staff

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