Multimode regimes in quantum cascade lasers: From coherent instabilities to spatial hole burning RID B-8648-2009

  • Gordon, Ariel
  • Wang, Christine Y.
  • Diehl, L.
  • Kaertner, F. X.
  • Belyanin, Alexey
  • Bour, D.
  • Corzine, S.
  • Hoefler, G.
  • Liu, H. C.
  • Schneider, H.
  • Maier, T.
  • Troccoli, M.
  • Faist, J.
  • Capasso, Federico
Publication date
January 2008
Publisher
American Physical Society (APS)

Abstract

Journals published by the American Physical Society can be found at http://publish.aps.org/A theoretical and experimental study of multimode operation regimes in quantum cascade lasers (QCLs) is presented. It is shown that the fast gain recovery of QCLs promotes two multimode regimes: One is spatial hole burning (SHB) and the other one is related to the Risken-Nummedal-Graham-Haken instability predicted in the 1960s. A model that can account for coherent phenomena, a saturable absorber, and SHB is developed and studied in detail both analytically and numerically. A wide variety of experimental data on multimode regimes is presented. Lasers with a narrow active region and/or with metal coating on the sides tend to develop a splitting in the ...

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