This thesis investigates novel dispersion compensation methods for mode-locked fiber lasers and the dynamical properties of ytterbium and thulium-holmium gain materials. The emphasis is on dielectric thin film structures and their integration into fiber cavities to control laser performance. A Gires–Tournois interferometer (GTI) made with electron beam evaporation was used for the first time to compensate for the dispersion of a fiber cavity and thus achieve ultrashort mode-locked pulses. Another thin film dispersion compensator, a Fabry-Pérot etalon, demonstrated in a mode-locked fiber laser, allowed for continuously tunable short pulse operation of an ytterbium fiber laser over a broad wavelength range. In addition to dispersive thin fi...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Ultrafast fiber lasers with superb pulse and beam quality are becoming important in various fields o...
Ultrahigh-speed optical time-division-multiplexing (TDM) transmission technologies are essential to ...
This thesis investigates novel dispersion compensation methods for mode-locked fiber lasers and the ...
This thesis is concerned with development and demonstration of new techniques for mode-locked fiber ...
This research work focuses on the development of fiber lasers operating in both continuous wave (CW)...
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
A growing interest on lasers operating in the eye-safe two micron spectral region especially on dual...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
This chapter reviews the fundamentals and achievements of ultrashort pulse generation and amplificat...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
This thesis focuses on research I have done on ytterbium-doped femtosecond fiber lasers. These laser...
Ultrahigh-speed optical time-division-multiplexing (TDM) transmission technologies are essential to ...
Ultrafast fiber lasers with superb pulse and beam quality are becoming important in various fields o...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Ultrafast fiber lasers with superb pulse and beam quality are becoming important in various fields o...
Ultrahigh-speed optical time-division-multiplexing (TDM) transmission technologies are essential to ...
This thesis investigates novel dispersion compensation methods for mode-locked fiber lasers and the ...
This thesis is concerned with development and demonstration of new techniques for mode-locked fiber ...
This research work focuses on the development of fiber lasers operating in both continuous wave (CW)...
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
Four years after the first demonstration of Light Amplification by Stimulated Emission of Radiation ...
A growing interest on lasers operating in the eye-safe two micron spectral region especially on dual...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
This chapter reviews the fundamentals and achievements of ultrashort pulse generation and amplificat...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
This thesis focuses on research I have done on ytterbium-doped femtosecond fiber lasers. These laser...
Ultrahigh-speed optical time-division-multiplexing (TDM) transmission technologies are essential to ...
Ultrafast fiber lasers with superb pulse and beam quality are becoming important in various fields o...
Within the past 10 years, thulium (Tm)-doped fiber lasers have emerged as a flexible platform offeri...
Ultrafast fiber lasers with superb pulse and beam quality are becoming important in various fields o...
Ultrahigh-speed optical time-division-multiplexing (TDM) transmission technologies are essential to ...