QI 8: Quantum Computing Theory I
  Montag, 10. März 2025, 17:00–19:00, HS IV
  
    
  
  
    
      
        
          
            
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          17:00 | 
          QI 8.1 | 
          
            
              Hauptvortrag:
            
            
              
                Quantum Informatics - From Quantum Gates to Quantum Software Engineering — •Ina Schaefer
              
            
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          17:30 | 
          QI 8.2 | 
          
            
            
              
                Tensor-Programmable Quantum Circuits for Solving Differential Equations — Pia Siegl, •Greta Sophie Reese, Tomohiro Hashizume, Nis-Luca van Hülst, and Dieter Jaksch
              
            
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          17:45 | 
          QI 8.3 | 
          
            
            
              
                Real-time measurement error mitigation for one-way quantum computation — Tobias Hartung, •Stephan Schuster, Joachim von Zanthier, and Karl Jansen
              
            
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          18:00 | 
          QI 8.4 | 
          
            
            
              
                Robustness of optimal quantum annealing protocols — Niklas Funcke and •Julian Berberich
              
            
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          18:15 | 
          QI 8.5 | 
          
            
            
              
                Adaptive Lie-algebra ansatz for ground-state calculations in a globally-driven Rydberg platform — •Marco Dall'Ara, Martin Koppenhöfer, Thomas Wellens, Florentin Reiter, and Walter Hahn
              
            
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          18:30 | 
          QI 8.6 | 
          
            
            
              
                Increasing Accuracy of the Variational Quantum Eigensolver with the Inverted-Circuit Zero-Noise Extrapolation — •Tobias Nauck, Kathrin König, Walter Hahn, and Thomas Wellens
              
            
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          18:45 | 
          QI 8.7 | 
          
            
            
              
                Why we should expect that quantum computers cannot factor efficiently — •Liam McGuinness
              
            
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