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  4. High-pulse-energy Tm3+-doped photonic crystal fiber laser for nonlinear frequency conversion into the mid-IR
 
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2024
Presentation
Title

High-pulse-energy Tm3+-doped photonic crystal fiber laser for nonlinear frequency conversion into the mid-IR

Title Supplement
Presentation held at High-Power Lasers and Technologies for Optical Countermeasures II, 2024, Edinburgh, United Kingdom. Published online only at SPIE Proceedings Volume PC13201
Abstract
A nanosecond-pulsed Tm-doped fiber laser (TDFL) operating at 2050 nm is reported based on a flexible photonic crystal fiber with a core diameter of 50 μm. The TDFL delivers gaussian-shaped pulses with a maximum pulse energy of 1.9 mJ, corresponding to a peak power of 15.4 kW and a pulse width of 116 ns. The average output power of the pulsed TDFL is 114 W at a pulse repetition rate of 60 kHz. The measured output spectrum shows a single peak at 2050 nm with a 3-dB-linewidth of 130 pm and a 10-dB-linewidth of 370 pm. The TDFL serves as an excellent pump source for mid-IR generation through nonlinear-frequency conversion in optical parametric oscillators based on ZnGeP2.
Author(s)
Schneider, Julian
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Lassiette, Hugo
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Lorenz, Dominik  
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Forster, Patrick  
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Panitzek, Dieter  
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Lautenschläger, Jan
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Romano, Clément  
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Eichhorn, Marc  
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Kieleck, Christelle  
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
Conference
Conference "High-Power Lasers and Technologies for Optical Countermeasures" 2024  
DOI
10.1117/12.3031761
Language
English
Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB  
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