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Titlebook: Spatio-Temporal Modeling and Device Optimization of Passively Mode-Locked Semiconductor Lasers; Stefan Meinecke Book 2022 The Editor(s) (i

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Stefan Meineckeles by the MIT-BNL (reported by S. C. C. Ting) and by the SLAC­ SPEAR (reported by M. Breidenbach) Groups, but also in the field of high energy neutrino interactions where Carlo Rubbia observes ~­ pairs, together with bumps in the total energy of the hadronic system at Wh~4 GeV and a discontinuity in theat Ev978-1-4613-4210-6978-1-4613-4208-3
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Stefan Meinecke MIT-BNL (reported by S. C. C. Ting) and by the SLAC­ SPEAR (reported by M. Breidenbach) Groups, but also in the field of high energy neutrino interactions where Carlo Rubbia observes ~­ pairs, together with bumps in the total energy of the hadronic system at Wh~4 GeV and a discontinuity in theat Ev
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2190-5053 successful numerical reproduction of the experimental findings, the emission dynamics of both lasers can be understood in terms of the cavity geometry and the active medium dynamics. The latter, in particular, 978-3-030-96250-0978-3-030-96248-7Series ISSN 2190-5053 Series E-ISSN 2190-5061
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V-Shaped External Cavity Laser,Passively mode-locked vertical-external-cavity surface-emitting lasers (VECSELs) based on semiconductor gain chips are capable of generating ultra short and high power pulses.
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,Summary and Outlook,In this thesis, the dynamics of passively mode-locked semiconductor lasers have been investigated. A special emphasis has been given to the spatio-temporal intra-cavity electric field and active medium gain dynamics.
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