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Analytical method for compact discharge electrodes in asymmetrical geometries

Abstract

An analytical technique based on a generalization of the Stappaerts method is proposed for discharge electrode designing. It allows one to consider asymmetry elements, such as current return bars, or to approach new laser geometries, e.g., the double-head laser.
Authors:
Flora, F; Mezi, L [1] 
  1. ENEA, Frascati (Italy). Centro Ricerche Energia - Area Energia e Innovazione
Publication Date:
Jan 01, 1994
Product Type:
Conference
Report Number:
ENEA-RT-INN-94-02; CONF-931237-11; RT/INN-94-02
Reference Number:
SCA: 426002; 700411; PA: ITA-95:000074; EDB-95:045940; SN: 95001347491
Resource Relation:
Conference: LASERS `93: international conference on lasers and applications,Lake Tahoe, NV (United States),6-10 Dec 1993; Other Information: PBD: Jan 1994
Subject:
42 ENGINEERING; 70 PLASMA PHYSICS AND FUSION TECHNOLOGY; GAS LASERS; ELECTRODES; DESIGN; ANALYTICAL SOLUTION; NUCLEAR PUMPING; ELECTRIC FIELDS; ELECTRIC DISCHARGES; 426002; 700411; LASERS AND MASERS; INERTIAL CONFINEMENT DEVICES
OSTI ID:
10124126
Research Organizations:
ENEA, Frascati (Italy). Centro Ricerche Energia - Area Energia e Innovazione
Country of Origin:
Italy
Language:
English
Other Identifying Numbers:
Journal ID: ISSN 1120-5571; Other: ON: DE95749720; TRN: IT9500074
Availability:
OSTI; NTIS (US Sales Only)
Submitting Site:
ITA
Size:
9 p.
Announcement Date:
Jul 04, 2005

Citation Formats

Flora, F, and Mezi, L. Analytical method for compact discharge electrodes in asymmetrical geometries. Italy: N. p., 1994. Web.
Flora, F, & Mezi, L. Analytical method for compact discharge electrodes in asymmetrical geometries. Italy.
Flora, F, and Mezi, L. 1994. "Analytical method for compact discharge electrodes in asymmetrical geometries." Italy.
@misc{etde_10124126,
title = {Analytical method for compact discharge electrodes in asymmetrical geometries}
author = {Flora, F, and Mezi, L}
abstractNote = {An analytical technique based on a generalization of the Stappaerts method is proposed for discharge electrode designing. It allows one to consider asymmetry elements, such as current return bars, or to approach new laser geometries, e.g., the double-head laser.}
place = {Italy}
year = {1994}
month = {Jan}
}