Nathalie Nagl Nagl A New Generation of Ultrafast Oscillators for Mid-Infrared Applications

A New Generation of Ultrafast Oscillators for Mid-Infrared Applications

von Nathalie Nagl

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Beschreibung

This thesis presents the first successful realization of a compact, low-noise, and few-cycle light source in the mid-infrared wavelength region. By developing the technology of pumping femtosecond chromium-doped II-VI laser oscillators directly with the emission of broad-stripe single-emitter laser diodes, coherent light was generated with exceptionally low amplitude noise — crucial for numerous applications including spectroscopy at high sensitivities. Other key parameters of the oscillator's output, such as pulse duration and output power, matched and even surpassed previous state-of-the-art systems. As a demonstration of its unique capabilities, the oscillator's powerful output was used to drive — without further amplification — the nonlinear generation of coherent mid-infrared light spanning multiple octaves. The resulting table-top system uniquely combines high brilliance and ultrabroad spectral bandwidth in the important mid-infrared spectral range.
The rapiddevelopment of this technology is comprehensively and lucidly documented in this PhD thesis. Together with a thorough review of literature and applications, and an extensive analysis of the theoretical foundations behind ultrafast laser oscillators, the thesis will serve as a valuable reference for the construction of a new generation of mid-infrared light sources.

This thesis presents the first successful realization of a compact, low-noise, and few-cycle light source in the mid-infrared wavelength region. By developing the technology of pumping femtosecond chromium-doped II-VI laser oscillators directly with the emission of broad-stripe single-emitter laser diodes, coherent light was generated with exceptionally low amplitude noise — crucial for numerous applications including spectroscopy at high sensitivities. Other key parameters of the oscillator's output, such as pulse duration and output power, matched and even surpassed previous state-of-the-art systems. As a demonstration of its unique capabilities, the oscillator's powerful output was used to drive — without further amplification — the nonlinear generation of coherent mid-infrared light spanning multiple octaves. The resulting table-top system uniquely combines high brilliance and ultrabroad spectral bandwidth in the important mid-infrared spectral range.

The rapid development of this technology is comprehensively and lucidly documented in this PhD thesis. Together with a thorough review of literature and applications, and an extensive analysis of the theoretical foundations behind ultrafast laser oscillators, the thesis will serve as a valuable reference for the construction of a new generation of mid-infrared light sources.


Nominated as an outstanding PhD thesis by the Max Planck Institute for Quantum Optics, Garching Serves as a foundation for a new generation of few-cycle mid-infrared light sources Of great relevance to those working on the development of next-generation mid-infrared light sources

Autor*in

Nathalie Nagl

Themen in »A New Generation of Ultrafast Oscillators for Mid-Infrared Applications«

Femtosecond Lasers Ultrafast Laser Oscillators Chromium-Doped II-VI Lasers Few-Cycle Pulses Ultrashort Pulse Generation Kerr-Lens Mode-Locking Soliton Mode-Locking Dispersion Management Coherent Mid-Infrared Sources Intra-Pulse Difference Frequency Generation Broadband Light Sources Single-Emitter Laser Diodes Diode-Pumping

Stimmen zu »A New Generation of Ultrafast Oscillators for Mid-Infrared Applications«

Details

ISBN: 9783030897567
Verlag: Springer International Publishing
Erscheinung: 03.02.2023

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