Laser Wakefield Electron Acceleration - A Novel Approach Employing Supersonic Microjets and Few-Cycle Laser Pulses (Paperback, 2011 ed.)


This thesis covers the few-cycle laser-driven acceleration of electrons in a laser-generated plasma. This process, known as laser wakefield acceleration (LWFA), relies on strongly driven plasma waves for the generation of accelerating gradients in the vicinity of several 100 GV/m, a value four orders of magnitude larger than that attainable by conventional accelerators. This thesis demonstrates that laser pulses with an ultrashort duration of 8 fs and a peak power of 6 TW allow the production of electron energies up to 50 MeV via LWFA. The special properties of laser accelerated electron pulses, namely the ultrashort pulse duration, the high brilliance, and the high charge density, open up new possibilities in many applications of these electron beams.

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Product Description

This thesis covers the few-cycle laser-driven acceleration of electrons in a laser-generated plasma. This process, known as laser wakefield acceleration (LWFA), relies on strongly driven plasma waves for the generation of accelerating gradients in the vicinity of several 100 GV/m, a value four orders of magnitude larger than that attainable by conventional accelerators. This thesis demonstrates that laser pulses with an ultrashort duration of 8 fs and a peak power of 6 TW allow the production of electron energies up to 50 MeV via LWFA. The special properties of laser accelerated electron pulses, namely the ultrashort pulse duration, the high brilliance, and the high charge density, open up new possibilities in many applications of these electron beams.

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Product Details

General

Imprint

Springer-Verlag

Country of origin

Germany

Series

Springer Theses

Release date

July 2013

Availability

Expected to ship within 10 - 15 working days

First published

2011

Authors

Dimensions

235 x 155 x 10mm (L x W x T)

Format

Paperback

Pages

166

Edition

2011 ed.

ISBN-13

978-3-642-26830-4

Barcode

9783642268304

Categories

LSN

3-642-26830-7



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