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High-brightness metal vapour lasers. Volume 1, Physical fundamentals and mathematical models / V.M. Batenin, V.V. Buchanov, A.M. Boichenko, M.I. Kazaryan, I.I. Klimovskii, E.I. Molodykh.

By: Batenin, V. M [author.].
Contributor(s): Buchanov, V. V [author.] | Boichenko, A. M [author.] | Kazaryan, M. I [author.] | Klimovskii, I. I [author.] | Molodykh, E. I [author.].
Material type: materialTypeLabelBookPublisher: Boca Raton : CRC Press, [2017]Copyright date: ©2017Description: 1 online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9781315372617; 9781315336268; 9781482250053.Other title: Physical fundamentals and mathematical models.Subject(s): Metal vapor lasers -- Design and construction | Metal vapor lasers -- Mathematical models | High power lasers -- Design and construction | High power lasers -- Mathematical modelsAdditional physical formats: Print version: : No titleDDC classification: 621.3663 Online resources: Click here to view.
Contents:
1. Devices and methods for producing metal vapours -- 2. Excitation circuit and its effect on the lasing characteristics of self-heating copper vapour lasers -- 3. Excitation circuits of self-contained lasers -- 4. Repetitively pulsed self-contained lasers -- 5. The results of analytical studies of self-contained lasers -- 6. Numerical studies of pulsed metal vapour lasers -- 7. Numerical modeling of repetitively pulsed copper vapour lasers taking into account the heterogeneity of distribution of plasma parameters (inhomogeneity of discharge) over the cross section of the gas discharge tube -- 8. Simulation of copper vapour lasers. Kinetically enhanced lasers.
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1. Devices and methods for producing metal vapours -- 2. Excitation circuit and its effect on the lasing characteristics of self-heating copper vapour lasers -- 3. Excitation circuits of self-contained lasers -- 4. Repetitively pulsed self-contained lasers -- 5. The results of analytical studies of self-contained lasers -- 6. Numerical studies of pulsed metal vapour lasers -- 7. Numerical modeling of repetitively pulsed copper vapour lasers taking into account the heterogeneity of distribution of plasma parameters (inhomogeneity of discharge) over the cross section of the gas discharge tube -- 8. Simulation of copper vapour lasers. Kinetically enhanced lasers.

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