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Efficient hard X-ray source using femtosecond plasma at solid targets with a modified surface

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This article is published in Laser and Particle Beams.The article was published on 2004-07-01 and is currently open access. It has received 22 citations till now. The article focuses on the topics: Femtosecond.

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Femtosecond electron diffraction: heralding the era of atomically resolved dynamics

TL;DR: A detailed review of the technical progress that made this new level of acuity possible and a survey of the new insights gained from an atomic level perspective of structural dynamics can be found in this article.
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Laser–induced film deposition by LIFT: Physical mechanisms and applications

TL;DR: In this article, the main fields of laser-induced film transfer (LIFT) applications are considered, and one of the most interesting directions of LIFT applications is investigated in detail.
Journal ArticleDOI

Laser-induced plasma spectroscopy for mine detection and verification

TL;DR: In this article, high power sub-nanosecond laser pulses (pulse power E p = 0.6 mJ and pulse duration Δ t = 650 ps) at 1064 nm with a typical repetition rate of 10 kHz were generated by using a passively Q-switched Cr 4+ :Nd 3+ :YAG microchip-laser as seedlaser for an Yb-fiber amplifier.
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Ultrafast structural dynamics with table top femtosecond hard X-ray and electron diffraction setups

TL;DR: In this article, a tutorial review of femtosecond (fs) diffraction techniques is presented, focusing on the generation of ultrashort and hard X-ray pulses in table top setups.
References
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Journal ArticleDOI

Not-so-resonant, resonant absorption.

TL;DR: When an intense electromagnetic wave is incident obliquely on a sharply bounded overdense plasma, strong energy absorption can be accounted for by the electrons that are dragged into the vacuum and sent back into the plasma with velocities vapprox.
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Short-pulse laser - plasma interactions

TL;DR: In this article, the authors surveyed recent theoretical and experimental research with short-pulse, high-intensity lasers with particular emphasis on new physical processes that occur in interactions with low-and high-density plasmas.
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Collisionless absorption in sharp-edged plasmas

TL;DR: The absorption of subpicosecond, obliquely incident laser light is studied using a 11/2D particle-in-cell code and is carried mainly by a superhot'' electron population with {ital U}{sub hot}{similar to}({ital I}{lambda}{sup 2}){sup 1/3--1/2}.
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High density plasmas produced by ultrafast laser pulses.

TL;DR: In this paper, the authors describe temporal and spectroscopic measurements of high-density plasmas produced by focusing intense, 160-fsec laser pulses on solids, up to photon energies of a kilovolt.
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