Dresden 2020 –
            
              wissenschaftliches Programm
            
          
        
        
        
          
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  TT 71: Correlated Electrons: Other Theoretical Topics
  Freitag, 20. März 2020, 09:30–12:00, HSZ 304
  
    
  
  
    
      
        
          
            
              |  | 09:30 | TT 71.1 | GW calculations of electron momentum densities and Compton profiles — •Eddie Harris-Lee, Alyn James, John Kay Dewhurst, and Stephen Dugdale | 
        
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              |  | 09:45 | TT 71.2 | Constrained Random Phase Approximation: Why and When it Works — •Erik van Loon, Malte Rösner, Mikhail Katsnelson, and Tim Wehling | 
        
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              |  | 10:00 | TT 71.3 | Nonergodic Observables in the Hubbard Model at finite temperatures — •Clemens Watzenböck, Anna Kauch, Alessandro Toschi, and Karsten Held | 
        
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              |  | 10:15 | TT 71.4 | Ground-state properties and enhancement of pairing correlations in an asymmetric Hubbard ladder — •Anas Abdelwahab and Eric Jeckelmann | 
        
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              |  | 10:30 | TT 71.5 | Influence of lattice geometry and dimensionality on the critical properties of magnetic transitions: A dynamical vertex approximation analysis — •Andreas Hausoel, Georg Rohringer, Thomas Schäfer, Giorgio Sangiovanni, and Alessandro Toschi | 
        
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            |  | 10:45 |  | 15 min. break. | 
        
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              |  | 11:00 | TT 71.6 | Nonlocal Exchange Interactions in Strongly Correlated Electron Systems — •Edin Kapetanović, Malte Schüler, Gerd Czycholl, and Tim Wehling | 
        
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              |  | 11:15 | TT 71.7 | How to recognize confinement of a hole in a string-like potential in doped antiferromagnets? — Krzysztof Bieniasz, •Piotr Wrzosek, Andrzej M. Oleś, and Krzysztof Wohlfeld | 
        
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              |  | 11:30 | TT 71.8 | Dynamical DMFT susceptibility at second orderphase transitions — •Abuduaini Niyazi, Dominique Geffroy, and Jan Kuneš | 
        
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              |  | 11:45 | TT 71.9 | Plasmons In Doped Mott Insulators — •Andrej Lehmann, Evgeny Stepanov, and Alexander Lichtenstein | 
        
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