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Download e-book for iPad: Laser-Plasma Interactions and Applications by Luis O. Silva, Robert Bingham (auth.), Paul McKenna, David

Posted On April 21, 2018 at 1:17 am by / Comments Off on Download e-book for iPad: Laser-Plasma Interactions and Applications by Luis O. Silva, Robert Bingham (auth.), Paul McKenna, David

By Luis O. Silva, Robert Bingham (auth.), Paul McKenna, David Neely, Robert Bingham, Dino Jaroszynski (eds.)

ISBN-10: 3319000373

ISBN-13: 9783319000374

ISBN-10: 3319000381

ISBN-13: 9783319000381

Laser-Plasma Interactions and Applications covers the elemental and utilized facets of excessive strength laser-plasma physics. With an across the world well known crew of authors, the publication broadens the information of younger researchers operating in excessive strength laser-plasma technology through supplying them with an intensive pedagogical grounding within the interplay of laser radiation with subject, laser-plasma accelerators, and inertial confinement fusion.

The textual content is organised such that the theoretical foundations of the topic are mentioned first, partially I. partly II, subject matters within the region of excessive strength density physics are coated. elements III and IV care for the purposes to inertial confinement fusion and as a motive force of particle and radiation assets, respectively. eventually, half V describes the primary diagnostic, targetry, and computational methods utilized in the sector.

This publication is designed to offer scholars an intensive origin within the primary physics of laser-plasma interactions. it's going to additionally supply readers with wisdom of the newest study traits and elucidate destiny intriguing demanding situations in laser-plasma science.

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The aim is to describe the phenomena of absorption and reflection of a short laser pulse in the interaction with over-dense plasma. In particular, a model of laser energy absorption for planar radiation of steep, high density plasma surfaces is presented. It is valid for arbitrary intensity and incidence angle. The model’s convenient closed form makes it widely applicable to laser-driven ion acceleration schemes, hard x-ray sources, and the fast igniter fusion concept. 1 Introduction Generation and direct amplification of short laser pulses with high output energies requires the use of amplifiers and other large-aperture components, which greatly increases the difficulties encountered in construction of suitable systems and, in the final analysis, their cost [1].

The normalised vector potential of a circularly polarised wave is: a(ξ ; τ ) = a(ξ , τ ){ez cos[τ − ψ (ξ , τ )] + ey sin[τ − ψ (ξ , τ )]}. 65) The ion dynamic is described by the system of hydro-equations. The following dimensionless variables and functions are used: Ω = ω /ω p , ω p = (4π Zni0 e2 /m)1/2 is the electron plasma frequency for the initial density Zni0 , ηe = ne /Zni0 is the normalised electron density, η = ni /ni0 is the normalised ion density and δe = me /mi , υi = vi /c. 3 tL - is the effective time of temperature formation (tL = τL /ω is the laser pulse duration), κ ∗ - is the absorption coefficient of the laser energy transformed into the electron energy.

Phys. Rev. Lett. 94, 165002 (2005) 32. R. , Phys. Rev. Lett. 99, 205006 (2007) 33. R. , J. Plasma Phys. 71, 899–904 (2005) 34. R. , Phys. Plasmas 16, 055904 (2009) 35. R. , Phys. Scripta T116, 75 (2005) 36. R. , Plasma Phys. Contr. F. 50, 124048 (2008) Chapter 2 Theory of Laser-Overdense Plasma Interactions Alexander Andreev Abstract This review chapter discusses a rapidly developing area of physics: the interaction of a high intensity laser pulse with a solid target. The aim is to describe the phenomena of absorption and reflection of a short laser pulse in the interaction with over-dense plasma.

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Laser-Plasma Interactions and Applications by Luis O. Silva, Robert Bingham (auth.), Paul McKenna, David Neely, Robert Bingham, Dino Jaroszynski (eds.)


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