Items where Author is "Wenzel, H."
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Number of items: 8.
Article
    
    
    PEREIRA, M. F. and WENZEL, H.
  
(2005).
    Microscopic theory for the valence intersubband absorption of quantum wells.
  
    Microelectronic Engineering, 81 (2-4), p. 510.
  
  
[Article]
    
  
    
    
    PEREIRA, M. F. and WENZEL, H.
  
(2004).
    Interplay of Coulomb and nonparabolicity effects in the intersubband absorption of electrons and holes in quantum wells.
  
    Physical review B, 70 (20), 205331-1.
  
  
[Article]
    
  
    
    
    PEREIRA, M. F. and WENZEL, H.
  
(2003).
    The influence of many body and electron nonparabolicity effects in the intersubband optical spectra of III-V quantum wells.
  
    Microelectronic engineering, 69 (2-4), 261-264.
  
  
[Article]
    
  
    
    
    PEREIRA, Mauro and WENZEL, H.
  
(2002).
    The Influence of Many-Body and Bandstructure Effects in the Design of High Power Diode Lasers.
  
    physica status solidi (b), 232 (1), 134-137.
  
  
[Article]
    
  
    
    
    WENZEL, H., KLEHR, A., ERBERT, G., SEBASTIAN, J., TRÄNKLE, G. and PEREIRA, Mauro
  
(2000).
    Effect of band gap renormalization on threshold current and efficiency of a distributed Bragg reflector laser.
  
    Applied Physics Letters, 76 (19), 2653-2655.
  
  
[Article]
    
  
    
    
    WENZEL, H., KLEHR, A., ERBERT, G., SEBASTIAN, J., TRÄNKLE, G. and PEREIRA, Mauro
  
(2000).
    Effect of band gap renormalization on threshold current and efficiency of a distributed Bragg reflector laser.
  
    Applied Physics Letters, 76 (19), p. 2653.
  
  
[Article]
    
  
Book Section
    
    
    PEREIRA, Mauro and WENZEL, H.
  
(2005).
    Coulomb-induced structure in the intersubband spectra of quantum wells.
  
    
      In:  
      2005 Quantum Electronics and Laser Science Conference.
    
    
    IEEE, 1141-1143.
  
  
[Book Section]
    
  
    
    
    PEREIRA, Mauro and WENZEL, H.
  
(2005).
    Many body and nonparabolicity effects in the intersubband transitions of conduction and valence bands of quantum well media.
  
    
      In:  
      EQEC '05. European Quantum Electronics Conference, 2005.
    
    
    IEEE, p. 14.
  
  
[Book Section]
    
  


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