Intéraction laser femtoseconde - diélectrique à intensité modérée

Intéraction laser femtoseconde - diélectrique à intensité modérée PDF Author: Nadezda Varkentina
Publisher:
ISBN:
Category :
Languages : en
Pages : 179

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Book Description
Numerous fundamental processes take place on time scales from several femtoseconds to hundreds of picoseconds. Moreover, the continuous demands of downscaling and increase of precision in the cutting-edge micromachining industry require the comprehension of the physical mechanisms and the identification of key laser parameters for an optimized use of femtosecond laser systems. Those systems shall allow production of controlled and calibrated micrometer-size structures with high spatial selectivity. In this PhD work, we study the interaction of a femtosecond laser (500 fs @ 1025 nm) with a dielectric target using a dedicated test-bench. The first part of this work describes the fundamental aspects of laser energy deposition in dielectrics (SiO2), its redistribution to the lattice and the process of laser ablation by means of pump-pump and time-resolved pump-probe experiments. The experimental study is accompanied by a computational modeling taking into account the beam propagation (one-dimensional Helmholtz equation), the non-equilibrium process of the energy deposition (two-temperature model) and the matter ionisation (rate equation describing the free electron density change). Finally, we put in evidence the interest of femtosecond lasers for material modification (notably for surface damage and ablation) which high specific benefit in such applications as micromachining and laser corneal surgery.

Intéraction laser femtoseconde - diélectrique à intensité modérée

Intéraction laser femtoseconde - diélectrique à intensité modérée PDF Author: Nadezda Varkentina
Publisher:
ISBN:
Category :
Languages : en
Pages : 179

Get Book Here

Book Description
Numerous fundamental processes take place on time scales from several femtoseconds to hundreds of picoseconds. Moreover, the continuous demands of downscaling and increase of precision in the cutting-edge micromachining industry require the comprehension of the physical mechanisms and the identification of key laser parameters for an optimized use of femtosecond laser systems. Those systems shall allow production of controlled and calibrated micrometer-size structures with high spatial selectivity. In this PhD work, we study the interaction of a femtosecond laser (500 fs @ 1025 nm) with a dielectric target using a dedicated test-bench. The first part of this work describes the fundamental aspects of laser energy deposition in dielectrics (SiO2), its redistribution to the lattice and the process of laser ablation by means of pump-pump and time-resolved pump-probe experiments. The experimental study is accompanied by a computational modeling taking into account the beam propagation (one-dimensional Helmholtz equation), the non-equilibrium process of the energy deposition (two-temperature model) and the matter ionisation (rate equation describing the free electron density change). Finally, we put in evidence the interest of femtosecond lasers for material modification (notably for surface damage and ablation) which high specific benefit in such applications as micromachining and laser corneal surgery.

Light Filaments

Light Filaments PDF Author: Jean-Claude Diels
Publisher: IET
ISBN: 1785612409
Category : Technology & Engineering
Languages : en
Pages : 391

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Book Description
This edited volume starts with tutorials about the science of filamentation before presenting in-depth chapters on the latest research, technologies and applications. It cover wide aspects of light filaments considering various mediums of propagation, with structured or single filaments, and filaments of different colours, as well as combined filaments. It also includes a wide range of applications from strong field ionisation and molecular properties to laser development and beam shaping, THz, lasing in air and supercontinuum generation.