Q 11: Quantum Information: Concepts and Methods II
  Montag, 8. März 2010, 16:30–19:00, E 214
  
    
  
  
    
      
        
          
            
              |  | 16:30 | Q 11.1 | Practical methods for witnessing genuine multi-qubit entanglement in the vicinity of symmetric states — •Geza Toth, Witlef Wieczorek, Roland Krischek, Nikolai Kiesel, Patrick Michelberger, and Harald Weinfurter | 
        
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              |  | 16:45 | Q 11.2 | Separability criteria for genuine multiparticle entanglement — •Otfried Gühne and Michael Seevinck | 
        
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              |  | 17:00 | Q 11.3 | Accuracy of the lower bound approximation for three-qubit concurrence — •Michael Siomau and Stephan Fritzsche | 
        
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              |  | 17:15 | Q 11.4 | Structure factors and entanglement witnesses — •Hermann Kampermann, Philipp Krammer, Dagmar Bruß, Reinhold A. Bertlmann, Leong Chuang Kwek, and Chiara Macchiavello | 
        
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              |  | 17:30 | Q 11.5 | Estimates for the three-tangle from incomplete information — •Andreas Osterloh and Philipp Hyllus | 
        
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              |  | 17:45 | Q 11.6 | Mutually unbiased bases generated by a single unitary operator — •Kedar Ranade, Oliver Kern, and Ulrich Seyfarth | 
        
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              |  | 18:00 | Q 11.7 | Simple adaptive measurement strategies for estimation of d-dimensional quantum states — •Christof Happ and Matthias Freyberger | 
        
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              |  | 18:15 | Q 11.8 | Entanglement between Atoms in a Diatomic Molecule — •Nathan Harshman and William Flynn | 
        
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              |  | 18:30 | Q 11.9 | Anderson Localization in Disordered Quantum Walks — •Volkher Scholz, Albert Werner, and Andre Ahlbrecht | 
        
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              |  | 18:45 | Q 11.10 | Area laws for thermal free fermions — •Holger Bernigau and Jens Eisert | 
        
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