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Lasers
Simulation of multimode lasing in an electron-beam-controlled CO2 laser with an unstable cavity under thermal self-action of radiation
V. G. Naumov, P. A. Svotin Troitsk Institute for Innovation and Fusion Research
Abstract:
A numerical technique for calculating the time-dependent multimode lasing in an electron-beam-controlled CO2 laser at significant optical inhomogeneities caused by radiation self-action is presented. The reported calculations for subatmospheric pressure yield a sequence of involvement of transverse modes in lasing, the evolution of their characteristics (which is self-consistent with the evolution of gain and optical inhomogeneities of the active medium), and the exclusion of output modes from lasing. This calculation technique can be used when the radiation round-trip time around the cavity is shorter than the characteristic time of change in the active-medium characteristics.
Received: 14.09.2009 Revised: 09.06.2010
Citation:
V. G. Naumov, P. A. Svotin, “Simulation of multimode lasing in an electron-beam-controlled CO2 laser with an unstable cavity under thermal self-action of radiation”, Kvantovaya Elektronika, 40:8 (2010), 691–696 [Quantum Electron., 40:8 (2010), 691–696]
Linking options:
https://www.mathnet.ru/eng/qe14214 https://www.mathnet.ru/eng/qe/v40/i8/p691
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