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Theoretical Study of Subpicosecond Pulse Amplification in XeF(C-A)

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The feasibility of using XeF(C-A) excimer media as an amplifier for subpicosecond short pulse lasers is theoretically investigated. Numerical caculations by using a coherent interaction model show that as a result of both a large saturation energy density and bleaching of absorbers output energy densities of >100 mJ/cm2 are easily obtained. Influence of narrow band absorption of excited xenon metastable atoms on the amplifier gain and pulse waveform is also predicted.
Title: Theoretical Study of Subpicosecond Pulse Amplification in XeF(C-A)
Description:
The feasibility of using XeF(C-A) excimer media as an amplifier for subpicosecond short pulse lasers is theoretically investigated.
Numerical caculations by using a coherent interaction model show that as a result of both a large saturation energy density and bleaching of absorbers output energy densities of >100 mJ/cm2 are easily obtained.
Influence of narrow band absorption of excited xenon metastable atoms on the amplifier gain and pulse waveform is also predicted.

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