The discovery of the spontaneous mode-locking of lasers(1,2), that is, the self-starting synchronous oscillation of electromagnetic modes in a cavity, has been a milestone of photonics allowing the realization of oscillators delivering ultrashort pulses. This process is so far known to occur only in standard ordered lasers and only in the presence of a specific device (the saturable absorber). We engineer a mode-selective pumping of a random laser formed by a self-assembled cluster of nanometric particles. We show that the random laser can be continuously driven from a configuration exhibiting weakly interacting electromagnetic resonances(4,5) to a regime of collectively oscillating strongly interacting modes(6,7). This phenomenon, which opens the way to the development of a new generation of miniaturized and all-optically controlled light sources, may be explained as the first evidence of spontaneous mode-locking in disordered resonators.

The mode-locking transition of random lasers

Marco Leonetti;Claudio Conti;
2011

Abstract

The discovery of the spontaneous mode-locking of lasers(1,2), that is, the self-starting synchronous oscillation of electromagnetic modes in a cavity, has been a milestone of photonics allowing the realization of oscillators delivering ultrashort pulses. This process is so far known to occur only in standard ordered lasers and only in the presence of a specific device (the saturable absorber). We engineer a mode-selective pumping of a random laser formed by a self-assembled cluster of nanometric particles. We show that the random laser can be continuously driven from a configuration exhibiting weakly interacting electromagnetic resonances(4,5) to a regime of collectively oscillating strongly interacting modes(6,7). This phenomenon, which opens the way to the development of a new generation of miniaturized and all-optically controlled light sources, may be explained as the first evidence of spontaneous mode-locking in disordered resonators.
2011
Istituto dei Sistemi Complessi - ISC
Inglese
5
September
615
617
3
http://www.nature.com/nphoton/journal/v5/n10/full/nphoton.2011.217.html#/supplementary-information
Sì, ma tipo non specificato
LIGHT DIFFUSION
MEDIA
Letter with Supplementary information (5 pp.). Published online 11 September 2011.
3
info:eu-repo/semantics/article
262
Leonetti, Marco; Conti, Claudio; Lopez, Cefe
01 Contributo su Rivista::01.01 Articolo in rivista
restricted
   Nanophotonics for Energy Efficiency
   NANOPHOTONICS4ENERGY
   FP7
   248855

   Light and complexity
   COMPLEXLIGHT
   FP7
   201766
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/229690
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