This work experimentally and numerically investigates the cavity solitons switch-on process in semiconductor microresonators. This is a highly relevant feature to applications since its duration determines the maximum speed at which the device can be addressed. Numerical simulations show a very good agreement with the experimental findings, both from the qualitative and quantitative viewpoints.

Cavity soliton switching in semiconductor microresonators / Hachair, X., Furfaro, L., Javaloyes, J., Giudici, M., Balle, S., Tredicce, J., Tissoni, G., Lugiato, L.A., Brambilla, M., Maggipinto, T.. - STAMPA. - (2005), p. 1567299.128. (2005 European Quantum Electronics Conference Munich, German June 12-17, 2005) [10.1109/EQEC.2005.1567299].

Cavity soliton switching in semiconductor microresonators

Brambilla, M.;
2005

Abstract

This work experimentally and numerically investigates the cavity solitons switch-on process in semiconductor microresonators. This is a highly relevant feature to applications since its duration determines the maximum speed at which the device can be addressed. Numerical simulations show a very good agreement with the experimental findings, both from the qualitative and quantitative viewpoints.
2005
2005 European Quantum Electronics Conference
0-7803-8973-5
Cavity soliton switching in semiconductor microresonators / Hachair, X., Furfaro, L., Javaloyes, J., Giudici, M., Balle, S., Tredicce, J., Tissoni, G., Lugiato, L.A., Brambilla, M., Maggipinto, T.. - STAMPA. - (2005), p. 1567299.128. (2005 European Quantum Electronics Conference Munich, German June 12-17, 2005) [10.1109/EQEC.2005.1567299].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/21305
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