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Numerical and experimental analysis of copper–vapor laser discharge

✍ Scribed by Deli Yu; Yongxiang Tao; Xianhua Yin; Lin Chen; Yan Yang; Hailan Li; Runwen Wang


Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
133 KB
Volume
17
Category
Article
ISSN
0895-2477

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✦ Synopsis


The differential equations describing discharge circuitry are presented. The thyratron resistance with a switching time coefficient is s in¨estigated. The plasma conducti¨ity used in these differential equations is estimated using the a¨ailable data on plasma parameters. The discharge current profile of numerical simulation is found to be in close agreement with the experimental data. In this way, the factors which ( affect the short rise time to increase lasing ability in the CVL copper᎐ ) ¨apor laser are studied. As a calculation result, the inductance of the laser head is subordinate to the thyratron circuit inductance in terms of the effect on the discharge current rise time. Very good agreement exists between the calculated and measured results.


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