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UID:/NewsandEvents/Archives/2013/newsitem/5085/Ent
 angled-Matthias-Christandl
DTSTAMP:20130531T000000
SUMMARY:Entangled?, Matthias Christandl
ATTENDEE;ROLE=Speaker:Matthias Christandl (ETH Zur
 ich)
DTSTART;TZID=Europe/Amsterdam:20130531T163000
DTEND;TZID=Europe/Amsterdam:20130531T000000
LOCATION:Room L016, CWI, Science Park 123, Amsterd
 am
DESCRIPTION:Abstract:  A quantum state is entangle
 d if it cannot be described by classical correlati
 ons alone. Entangled states are responsible for th
 e security of quantum cryptography, the speed-up i
 n quantum computation and properties of many physi
 cal systems. But if an experimenter has determined
  the quantum state of his system, how can he find 
 out whether or not the state is in fact entangled?
  Answering this question has kept the field of qua
 ntum information theory busy since its beginning. 
 After an introduction to the subject, I will expla
 in the fastest way of determining when a state is 
 entangled.
X-ALT-DESC;FMTTYPE=text/html:\n      <p>Abstract:<
 br/>\nA quantum state is entangled if it cannot be
  described by classical correlations\nalone. Entan
 gled states are responsible for the security of qu
 antum\ncryptography, the speed-up in quantum compu
 tation and properties of many\nphysical systems. B
 ut if an experimenter has determined the quantum s
 tate of his\nsystem, how can he find out whether o
 r not the state is in fact entangled?\nAnswering t
 his question has kept the field of quantum informa
 tion theory busy\nsince its beginning. After an in
 troduction to the subject, I will explain the\nfas
 test way of determining when a state is entangled.
 \n      </p>\n    
URL:/NewsandEvents/Archives/2013/newsitem/5085/Ent
 angled-Matthias-Christandl
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