4.1 Article Proceedings Paper

Intraband and interband absorption of femtosecond laser pulses in copper

期刊

LASER AND PARTICLE BEAMS
卷 23, 期 3, 页码 391-393

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/S026303460505055X

关键词

copper; core state ionization; femtosecond; interband; metal plasma transition

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We investigated the optical properties of pure copper irradiated by a femtosecond laser pulse. Self-absorption of 50-fs laser pulses at 800 run and 400 mu wavelengths (below and above the interband absorption threshold, respectively) is studied for peak laser intensities up to 10(15) W/cm(2). Theoretical description of laser interaction with copper target is developed, solving numerically the energy balance equations for electron and ion subsystems together with Maxwell equations for laser radiation field inside the target. The theory accounts for both intraband and interband absorption mechanisms. We treated in detail the changes in electron structure and distribution function with an increase in electron temperature, as well as the ensuing changes in thermodynamic properties, collision frequencies, optical and transport coefficients. Experimental work on self-absorption of femtosecond laser pulses in copper targets at 800 run and 400 nm wavelengths is ongoing. Results for 800 mu wavelength are reported. Theory and experiment are in good agreement.

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