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Orbital perspective on high-harmonic generation from solids

Author

Listed:
  • Álvaro Jiménez-Galán

    (National Research Council of Canada and University of Ottawa
    Max-Born-Institute
    Consejo Superior de Investigaciones Científicas (CSIC))

  • Chandler Bossaer

    (National Research Council of Canada and University of Ottawa
    University of Ottawa)

  • Guilmot Ernotte

    (National Research Council of Canada and University of Ottawa)

  • Andrew M. Parks

    (University of Ottawa)

  • Rui E. F. Silva

    (Consejo Superior de Investigaciones Científicas (CSIC))

  • David M. Villeneuve

    (National Research Council of Canada and University of Ottawa)

  • André Staudte

    (National Research Council of Canada and University of Ottawa)

  • Thomas Brabec

    (University of Ottawa)

  • Adina Luican-Mayer

    (University of Ottawa)

  • Giulio Vampa

    (National Research Council of Canada and University of Ottawa)

Abstract

High-harmonic generation in solids allows probing and controlling electron dynamics in crystals on few femtosecond timescales, paving the way to lightwave electronics. In the spatial domain, recent advances in the real-space interpretation of high-harmonic emission in solids allows imaging the field-free, static, potential of the valence electrons with picometer resolution. The combination of such extreme spatial and temporal resolutions to measure and control strong-field dynamics in solids at the atomic scale is poised to unlock a new frontier of lightwave electronics. Here, we report a strong intensity-dependent anisotropy in the high-harmonic generation from ReS2 that we attribute to angle-dependent interference of currents from the different atoms in the unit cell. Furthermore, we demonstrate how the laser parameters control the relative contribution of these atoms to the high-harmonic emission. Our findings provide an unprecedented atomic perspective on strong-field dynamics in crystals, revealing key factors to consider in the route towards developing efficient harmonic emitters.

Suggested Citation

  • Álvaro Jiménez-Galán & Chandler Bossaer & Guilmot Ernotte & Andrew M. Parks & Rui E. F. Silva & David M. Villeneuve & André Staudte & Thomas Brabec & Adina Luican-Mayer & Giulio Vampa, 2023. "Orbital perspective on high-harmonic generation from solids," Nature Communications, Nature, vol. 14(1), pages 1-6, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-44041-0
    DOI: 10.1038/s41467-023-44041-0
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    References listed on IDEAS

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    1. Olga Smirnova & Yann Mairesse & Serguei Patchkovskii & Nirit Dudovich & David Villeneuve & Paul Corkum & Misha Yu. Ivanov, 2009. "High harmonic interferometry of multi-electron dynamics in molecules," Nature, Nature, vol. 460(7258), pages 972-977, August.
    2. F. Langer & M. Hohenleutner & C. P. Schmid & C. Poellmann & P. Nagler & T. Korn & C. Schüller & M. S. Sherwin & U. Huttner & J. T. Steiner & S. W. Koch & M. Kira & R. Huber, 2016. "Lightwave-driven quasiparticle collisions on a subcycle timescale," Nature, Nature, vol. 533(7602), pages 225-229, May.
    3. T. T. Luu & M. Garg & S. Yu. Kruchinin & A. Moulet & M. Th. Hassan & E. Goulielmakis, 2015. "Extreme ultraviolet high-harmonic spectroscopy of solids," Nature, Nature, vol. 521(7553), pages 498-502, May.
    4. H. Lakhotia & H. Y. Kim & M. Zhan & S. Hu & S. Meng & E. Goulielmakis, 2020. "Laser picoscopy of valence electrons in solids," Nature, Nature, vol. 583(7814), pages 55-59, July.
    5. Sefaattin Tongay & Hasan Sahin & Changhyun Ko & Alex Luce & Wen Fan & Kai Liu & Jian Zhou & Ying-Sheng Huang & Ching-Hwa Ho & Jinyuan Yan & D. Frank Ogletree & Shaul Aloni & Jie Ji & Shushen Li & Jing, 2014. "Monolayer behaviour in bulk ReS2 due to electronic and vibrational decoupling," Nature Communications, Nature, vol. 5(1), pages 1-6, May.
    6. Georges Ndabashimiye & Shambhu Ghimire & Mengxi Wu & Dana A. Browne & Kenneth J. Schafer & Mette B. Gaarde & David A. Reis, 2016. "Solid-state harmonics beyond the atomic limit," Nature, Nature, vol. 534(7608), pages 520-523, June.
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