Generation of Runaway Electron Beams & X-Rays in High Pressure Gases: Volume 2: Processes & Applications

Author:   Victor F Tarasenko
Publisher:   Nova Science Publishers Inc
ISBN:  

9781634858342


Pages:   300
Publication Date:   01 December 2016
Format:   Hardback
Availability:   In stock   Availability explained
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Generation of Runaway Electron Beams & X-Rays in High Pressure Gases: Volume 2: Processes & Applications


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Overview

This collective book provides a review of research concentrated on runaway electron beams and X-rays in an inhomogeneous electric field with different gases at increased pressure. Attention is also given to supershort avalanche electron beam (SAEB) in the optimal conditions. New experimental techniques and equipment, including those with picosecond time resolutions, were required for diagnostics of electrical and optical signals. The book consists of twenty-four chapters, some of which were written jointly by researchers of different teams. Some chapters consider the range of SAEB applications.

Full Product Details

Author:   Victor F Tarasenko
Publisher:   Nova Science Publishers Inc
Imprint:   Nova Science Publishers Inc
Weight:   0.746kg
ISBN:  

9781634858342


ISBN 10:   1634858344
Pages:   300
Publication Date:   01 December 2016
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In stock   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

Preface; Experimental & Numerical Research of Runaway Electron Generation During Nanosecond Timescale Duration Electrical Discharge in Pressurized Gases; Generation of Powerful Runaway Electron Beams in Dense Gases; Theoretical Estimate of Runaway Electrons Characteristics in High-Pressure Pulsed Discharges; Generation of Runaway Electrons in Laser Plasma; Generation of Runaway Electron Beams from Plasma Cathode in Air Discharge at Atmospheric Pressure; Obtaining the Powerful Abnormal Discharge with the Runaway Electrons; Numerical Simulation of Inception & Breakdown Process in Runaway Electron Pre-Ionized Nanosecond Pulse Discharges; Dynamics of Ionization Processes in High-Pressure Nitrogen, Air, & SF6 during a Subnanosecond Breakdown Initiated by Runaway Electrons; Polarity Effect & its Inversion in Nanosecond-Pulse Breakdown of Dense Gases; Application of Run-Away Electron Beams & Run-Away Electron Preionized Discharges for Excitation of Gas Lasers; Emission of Polymethyl Methacrylate Excited by a Supershort Avalanches Electron Beam & by a UV Excilamp; Index.

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