Advances in Laser Produced Plasmas Research

The world of laser matter interaction has known great and rapid advancements in the last few years, with a considerable increase in the number of both experimental and theoretical studies. The classical paradigm used to describe the dynamics of laser produced plasmas has been challenged by new pecu...

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Year of Publication:2020
Language:English
Physical Description:1 electronic resource (104 p.)
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520 |a The world of laser matter interaction has known great and rapid advancements in the last few years, with a considerable increase in the number of both experimental and theoretical studies. The classical paradigm used to describe the dynamics of laser produced plasmas has been challenged by new peculiar phenomena observed experimentally, like plasma particles’ oscillations, plume splitting and self-structuring behavior during the expansion of the ejected particles. The use of multiple complementary techniques has become a requirement nowadays, as different aspects can be showcased by specific experimental approaches. To balance these non-linear effects and still remain tributary to the classical theoretical, views on laser produced plasma dynamics novel theoretical models that cover the two sides of the ablation plasma (differentiability and non-differentiability) still need to be developed. Plasma is a strongly nonlinear dynamic system, with many degrees of freedom and other symmetries, favorable for the development of ordered structures, instabilities and transitions (from ordered to chaotic states). In such contexts, we showcased research based on global and local symmetries, complexity and invariance. This special number highlighted exciting new phenomena related to laser produced plasma dynamics with the implementation of theoretical models, towards understanding the complex reality of laser matter interaction. 
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653 |a Lorenz system 
653 |a fractal analysis 
653 |a laser produced plasmas 
653 |a plasma structuring 
653 |a ionic oscillations 
653 |a optical emission spectroscopy 
653 |a laser ablation 
653 |a petrographic analysis 
653 |a fractal model 
653 |a group invariance 
653 |a nitinol 
653 |a pulsed laser deposition 
653 |a in situ plasma monitoring 
653 |a thin films 
653 |a fractal modelling 
653 |a SL(2R) invariance 
653 |a homographic transformations 
653 |a Riccati equation 
653 |a plasma diagnostic 
653 |a hydroxyapatite thin film 
653 |a charged particle oscillations 
653 |a Langmuir probe 
653 |a Lie groups 
653 |a joint invariant functions 
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