arXiv · 2609.24643
Replica Symmetry Breaking in the Quasi Mode Locked Regime of Titanium Sapphire Lasers
Abstract
Recent observations of replica symmetry breaking (RSB) in ytterbium-based mode-locked fiber lasers have revealed glassy behavior in the quasi-mode-locked (QML) regime. Here, we investigate whether this behavior is restricted to a specific laser implementation or represents a more general feature of mode-locked systems. By analyzing statistical correlations of spectral intensity fluctuations through the Parisi overlap and Pearson correlation parameters, we study two Titanium:sapphire laser systems: a homemade cavity and a commercial laser. In both cases, clear signatures of RSB are observed in the QML regime, while replica-symmetric behavior is recovered in the amplified spontaneous emission (ASE) and standard mode-locked (SML) regimes. These results demonstrate the occurrence of RSB in Titanium:sapphire lasers and support the interpretation of the QML regime as a photonic glassy phase. Together with previous observations in ytterbium-based fiber lasers, these findings suggest that the connection between QML dynamics and RSB may be a general feature of mode-locked laser systems.
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Nicolas P. Alves, Ricardo V. M. de Almeida Filho, Isaac C. Nunes, Gleison S. Bezerra, Cid B. de Araújo, Marcio H. G. de Miranda, André C. A. Siqueira. 2026-09-21. Replica Symmetry Breaking in the Quasi Mode Locked Regime of Titanium Sapphire Lasers. https://doi.org/10.1038/s41598-026-70225-x
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