20119801        
        
          Lecture        
      
      WiSe 15/16: Coherent Spectroscopy
Robert Bittl
Comments
        Starting with basic concepts of quantum mechanics relevant for spectroscopy (two level systems, quantum mechanics of electromagnetic transitions, density matrix, etc.), the lecture will cover realization and application of coherent spectroscopy in magnetic resonance and optics including, e.g. spin and photon echo phenomena, quantum beats.        close
    
  Suggested reading
      Hertel and Schulz; Atoms, Molecules and Optical Physics, Volumes 1 and 2; Springer Bagguley (ed.); Pulsed Magnetic Resonance: NMR, ESR, and Optics; Oxford Science Publications          
  10 Class schedule
Regular appointments
                  
                    
                      Mon, 2016-02-22 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Tue, 2016-02-23 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Wed, 2016-02-24 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Thu, 2016-02-25 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Fri, 2016-02-26 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Mon, 2016-02-29 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Tue, 2016-03-01 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Wed, 2016-03-02 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Thu, 2016-03-03 08:00 - 14:00                    
                        
    
    
                  
                  
                    
                      Fri, 2016-03-04 08:00 - 14:00                    
                        
    
    
                  
                
              