Thulium- and holmium-doped fiber lasers (TDF and HDF) emitting at 2 micron offer unique benefits and applications compared to common ytterbium-doped 1 micron lasers. This dissertation details the concepts, limitations, design, and performance of four 2 micron fiber laser systems. While these lasers were developed for various end-uses, they also provide further insight into two major power scaling limitations. The first limitation is optical nonlinearities: specifically stimulated Brillouin scattering (SBS) and modulation instability (MI). The second limitation is thermal failure due to inefficient pump conversion. First, a 21.5 W single-frequency, single-mode laser with adjustable output from continuous-wave to nanosecond pulses is develope...
This thesis presents detailed and precise experimental and theoretical studies of Thulium-doped base...
Thulium offers novel applications at 2 μm, and with continued developments, peak and average powers ...
Thulium offers novel applications at 2 μm, and with continued developments, peak and average powers ...
Thulium- and holmium-doped fiber lasers (TDF and HDF) emitting at 2 micron offer unique benefits and...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
In this thesis, high pulse energy single frequency fiber laser at 2 micron wavelength is designed an...
High power fiber lasers have revolutionized many areas of both basic research and industry with thei...
Delivering high peak powers from fiber lasers is limited by the accumulation of nonlinear effects du...
Over the past decade, fiber lasers have developed in all aspects of laser performance with some sign...
Recent years have seen a phenomenal rise in the capabilities of high power fibers lasers. 10 kW is n...
Recent years have seen a phenomenal rise in the capabilities of high power fibers lasers. 10 kW is n...
Thulium based fiber lasers represent a promising alternative for pulse energy scaling and high peak ...
Recent years have seen a phenomenal rise in the capabilities of high power fibers lasers. 10 kW is n...
This thesis presents detailed and precise experimental and theoretical studies of Thulium-doped base...
Thulium offers novel applications at 2 μm, and with continued developments, peak and average powers ...
Thulium offers novel applications at 2 μm, and with continued developments, peak and average powers ...
Thulium- and holmium-doped fiber lasers (TDF and HDF) emitting at 2 micron offer unique benefits and...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
In this thesis, high pulse energy single frequency fiber laser at 2 micron wavelength is designed an...
High power fiber lasers have revolutionized many areas of both basic research and industry with thei...
Delivering high peak powers from fiber lasers is limited by the accumulation of nonlinear effects du...
Over the past decade, fiber lasers have developed in all aspects of laser performance with some sign...
Recent years have seen a phenomenal rise in the capabilities of high power fibers lasers. 10 kW is n...
Recent years have seen a phenomenal rise in the capabilities of high power fibers lasers. 10 kW is n...
Thulium based fiber lasers represent a promising alternative for pulse energy scaling and high peak ...
Recent years have seen a phenomenal rise in the capabilities of high power fibers lasers. 10 kW is n...
This thesis presents detailed and precise experimental and theoretical studies of Thulium-doped base...
Thulium offers novel applications at 2 μm, and with continued developments, peak and average powers ...
Thulium offers novel applications at 2 μm, and with continued developments, peak and average powers ...