arXiv · 1512.01664
Avalanche effect and gain saturation in high harmonic generation
Abstract
Optical amplifiers in all ranges of the electromagnetic spectrum exhibit two essential characteristics: i) the input signal during the propagation in the medium is multiplied by the avalanche effect of the stimulated emission to produce exponential growth and ii) the amplification saturates at increasing input signal. We demonstrate that the strong-field theory in the frame of high harmonic generation fully supports the appearance of both the avalanche and saturation effects in the amplification of extreme ultraviolet attosecond pulse trains. We confirm that the amplification takes place only if the seed pulses are perfectly synchronized with the driving strong field in the amplifier. We performed an experimental study and subsequent model calculation on He gas driven by intense 30-fs-long laser pulses, which was seeded with an attosecond pulse train at 110 eV generated in a separated Ne gas jet. The comparison of the performed calculations with the measurements clearly demonstrates that the pumped He gas medium acted as an amplifier of the extreme ultraviolet pulse train.
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Carles Serrat, David Roca, Josep M. Budesca, Jozsef Seres, Enikoe Seres, Bastian Aurand, Andreas Hoffmann, Shinichi Namba, Thomas Kuehl, Christian Spielmann. 2015-12-05. Avalanche effect and gain saturation in high harmonic generation. https://arxiv.org/abs/1512.01664
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