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  Q 28: Precision Measurements and Metrology (Gravity)
  Wednesday, March 11, 2020, 11:00–12:45, f435
  
    
  
  
    
      
        
          
            
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          11:00 | 
          Q 28.1 | 
          
            
            
              
                Fundamental investigation of micro-optomechanical devices for quantum measurements — •Mariia Matiushechkina, Bernd Schulte, Roman Kossak, and Michèle Heurs
              
            
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          11:15 | 
          Q 28.2 | 
          
            
            
              
                Gravitational Influence on Earth-based Laser Cavity Experiments — •Sebastian Ulbricht, Johannes Dickmann, Robert A. Müller, Stefanie Kroker, and Andrey Surzhykov
              
            
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          11:30 | 
          Q 28.3 | 
          
            
            
              
                A phase reference distribution system for LISA: Building the optical benches of the Three-Backlink Experiment — •Nicole Knust, Lea Bischof, Stefan Ast, Max Rohr, Daniel Penkert, Juliane von Wrangel, Katharina-Sophie Isleif, Oliver Gerberding, Karsten Danzmann, and Gerhard Heinzel
              
            
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          11:45 | 
          Q 28.4 | 
          
            
            
              
                Optical Metrology Terminal for Satellite-to-Satellite Laser Ranging — •Paul Koschmieder, Oliver Mandel, Michael Chwalla, Thilo Schuldt, Jasper Krauser, Dennis Weise, and Claus Braxmaier
              
            
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          12:00 | 
          Q 28.5 | 
          
            
            
              
                Development of a micro-integrated, crossed-beam optical dipole trap setup for integrated atomic quantum sensors — •Marc Christ, Anne Stiekel, and Markus Krutzik
              
            
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          12:15 | 
          Q 28.6 | 
          
            
            
              
                Suitable optomechanical oscillators for an all optical coherent quantum noise cancellation exeriment — •Bernd Schulte, Daniel Steinmeyer, Mariia Matiushechkina, Margot Hensler Hennig, and Michèle Heurs
              
            
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          12:30 | 
          Q 28.7 | 
          
            
            
              
                Effective negative-mass oscillator for coherent quantum noise cancellation — •Jonas Junker, Daniel Steinmeyer, Dennis Wilken, and Michèle Heurs
              
            
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