Publikation:

Controlled polar asymmetry of few-cycle and intense mid-infrared pulses

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Schmidt_0-340728.pdf
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2016

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European Union (EU): 290876

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Ultrafast Quantum Physics in Amplitude and Phase - UltraPhase, ERC Advanced Grant
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Journal of Optics. 2016, 18(5), 05LT01. ISSN 2040-8978. eISSN 2040-8986. Available under: doi: 10.1088/2040-8978/18/5/05LT01

Zusammenfassung

We demonstrate synthesis of ultrabroadband and phase-locked two-color transients in the multi-terahertz frequency range with amplitudes exceeding 13 MV cm−1. Subcycle polar asymmetry of the electric field is adjusted by changing the relative phase between superposed fundamental and second harmonic components. The resultant broken symmetry of the field profile is directly resolved via electro-optic sampling. Access to such waveforms provides a direct route for control of low-energy degrees of freedom in condensed matter as well as non-perturbative light–matter interactions under highest non-resonant electric bias.

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530 Physik

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ISO 690SCHMIDT, Christian, Johannes BÜHLER, Bernhard MAYER, Alexej PASHKIN, Alfred LEITENSTORFER, Denis V. SELETSKIY, 2016. Controlled polar asymmetry of few-cycle and intense mid-infrared pulses. In: Journal of Optics. 2016, 18(5), 05LT01. ISSN 2040-8978. eISSN 2040-8986. Available under: doi: 10.1088/2040-8978/18/5/05LT01
BibTex
@article{Schmidt2016Contr-34524,
  year={2016},
  doi={10.1088/2040-8978/18/5/05LT01},
  title={Controlled polar asymmetry of few-cycle and intense mid-infrared pulses},
  number={5},
  volume={18},
  issn={2040-8978},
  journal={Journal of Optics},
  author={Schmidt, Christian and Bühler, Johannes and Mayer, Bernhard and Pashkin, Alexej and Leitenstorfer, Alfred and Seletskiy, Denis V.},
  note={Article Number: 05LT01}
}
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