The recent study of ring quantum cascade lasers [1] , [2] (QCLs, Fig. 1a ) revealed a new laser instability. It is triggered by phase turbulence akin to the wave instabilities that occur in other nonlinear systems such as fluids, superconductors and Bose-Einstein condensates. The choice of the ring geometry took inspiration from Kerr combs [3] , that are commonly generated in passive ring microresonators and have attracted great attention within the photonics community in the last years thanks to their rich physics.
Nonlinear Dynamics in Semiconductor Ring Lasers: From Phase Turbulence to Solitons / Piccardo, M.; Schwarz, B.; Columbo, L. L.; Prati, F.; Lugiato, L.; Brambilla, M.; Gatti, A.; Silvestri, C.; Gioannini, M.; Kazakov, D.; Opacak, N.; Beiser, M.; Hillbrand, J.; Wang, Y.; Belyanin, A.; Capasso, F.. - ELETTRONICO. - (2021), pp. 1-1. (Intervento presentato al convegno 2021 Conference on Lasers and Electro-Optics Europe and European Quantum Electronics Conference, CLEO/Europe-EQEC 2021 tenutosi a Munich, Germany nel 21-25 June 2021) [10.1109/CLEO/Europe-EQEC52157.2021.9542382].
Nonlinear Dynamics in Semiconductor Ring Lasers: From Phase Turbulence to Solitons
Columbo L. L.;Silvestri C.;Gioannini M.;
2021
Abstract
The recent study of ring quantum cascade lasers [1] , [2] (QCLs, Fig. 1a ) revealed a new laser instability. It is triggered by phase turbulence akin to the wave instabilities that occur in other nonlinear systems such as fluids, superconductors and Bose-Einstein condensates. The choice of the ring geometry took inspiration from Kerr combs [3] , that are commonly generated in passive ring microresonators and have attracted great attention within the photonics community in the last years thanks to their rich physics.File | Dimensione | Formato | |
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EQEC-2021-ef_2_5_conference.pdf
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https://hdl.handle.net/11583/2952580