Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories

X. Huo, X. Liu, S. Yang, X. Song, T. Meier, W. Yang, Physical Review Research 8 (2026).

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Journal Article | Published | English
Author
Huo, Xunqin; Liu, Xiwang; Yang, Shidong; Song, Xiaohong; Meier, TorstenLibreCat ; Yang, Weifeng
Abstract
<jats:p> High-harmonic generation in solids enables probing of strong-field electron dynamics in condensed matter and the development of compact ultrafast light sources. Whereas most studies have focused on above-bandgap high-order harmonics, which are usually interpreted through short electron-hole trajectories that recombine within one optical cycle, the microscopic origin of low-order emission near the bandgap remains poorly understood. Here, we investigate near-bandgap harmonic generation in ZnO by combining semiconductor Bloch equations with a complex-time quantum-trajectory analysis. Our results indicate that these harmonics are not a continuation of the short trajectory. Rather, they originate from multiple-scattering trajectories, in which the electron-hole pair undergoes repeated Bragg scattering at the Brillouin-zone boundary and electron-hole reencounter near the <a:math xmlns:a="http://www.w3.org/1998/Math/MathML"> <a:mi mathvariant="normal">Γ</a:mi> </a:math> point before the actual recombination occurs. We identify that the imaginary part of the electron-hole displacement provides a practical diagnostic of the residual tunneling memory. Real-space electron-hole overlap alone does not imply coherent recombination unless the full complex displacement vanishes. These results clarify the microscopic picture of near-bandgap harmonic emission in ZnO and offer a framework for interpreting phase-resolved strong-field dynamics in solids. </jats:p>
Publishing Year
Journal Title
Physical Review Research
Volume
8
Issue
3
Article Number
033303
ISSN
LibreCat-ID

Cite this

Huo X, Liu X, Yang S, Song X, Meier T, Yang W. Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories. Physical Review Research. 2026;8(3). doi:10.1103/l939-jglf
Huo, X., Liu, X., Yang, S., Song, X., Meier, T., & Yang, W. (2026). Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories. Physical Review Research, 8(3), Article 033303. https://doi.org/10.1103/l939-jglf
@article{Huo_Liu_Yang_Song_Meier_Yang_2026, title={Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories}, volume={8}, DOI={10.1103/l939-jglf}, number={3033303}, journal={Physical Review Research}, publisher={American Physical Society (APS)}, author={Huo, Xunqin and Liu, Xiwang and Yang, Shidong and Song, Xiaohong and Meier, Torsten and Yang, Weifeng}, year={2026} }
Huo, Xunqin, Xiwang Liu, Shidong Yang, Xiaohong Song, Torsten Meier, and Weifeng Yang. “Near-Bandgap Harmonic Generation in Solids from Multiple Scattering Revealed by Complex Quantum Trajectories.” Physical Review Research 8, no. 3 (2026). https://doi.org/10.1103/l939-jglf.
X. Huo, X. Liu, S. Yang, X. Song, T. Meier, and W. Yang, “Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories,” Physical Review Research, vol. 8, no. 3, Art. no. 033303, 2026, doi: 10.1103/l939-jglf.
Huo, Xunqin, et al. “Near-Bandgap Harmonic Generation in Solids from Multiple Scattering Revealed by Complex Quantum Trajectories.” Physical Review Research, vol. 8, no. 3, 033303, American Physical Society (APS), 2026, doi:10.1103/l939-jglf.

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