Sub-cycle slicing of phase-locked and intense mid-infrared transients
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We demonstrate sub-cycle manipulation of mid-infrared optical waveforms in the time domain. This goal is accomplished via efficient reflection at a semiconductor surface induced by femtosecond interband excitation. The ultrafast response of this process allows slicing of high-field multi-terahertz transients down to the single optical cycle. Ultrabroadband and phase-stable transients with peak amplitudes beyond 10 MVcm-1 are obtained, paving the way for efficient coherent control of light–matter interaction in the non-perturbative regime. The microscopic analysis of electron–hole plasma generation in germanium reveals a decisive role of two-photon absorption allowing efficient slicing up to midinfrared frequencies.
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MAYER, Bernhard, Christian SCHMIDT, Johannes BÜHLER, Denis V. SELETSKIY, Daniele BRIDA, Alexej PASHKIN, Alfred LEITENSTORFER, 2014. Sub-cycle slicing of phase-locked and intense mid-infrared transients. In: New Journal of Physics. 2014, 16(6), pp. 063033. ISSN 1367-2630. eISSN 1367-2630. Available under: doi: 10.1088/1367-2630/16/6/063033BibTex
@article{Mayer2014Subcy-28157, year={2014}, doi={10.1088/1367-2630/16/6/063033}, title={Sub-cycle slicing of phase-locked and intense mid-infrared transients}, number={6}, volume={16}, issn={1367-2630}, journal={New Journal of Physics}, author={Mayer, Bernhard and Schmidt, Christian and Bühler, Johannes and Seletskiy, Denis V. and Brida, Daniele and Pashkin, Alexej and Leitenstorfer, Alfred}, note={Article Number: 063033} }
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