DOE OSTI · 1800367
Optical high-order harmonic generation as a structural characterization tool
Abstract
Structural characterization is essential to material engineering, but few tools can detect structural properties in the time domain. High harmonic generation (HHG) emerges as a new frontier that touches the heart of condensed-matter physics from the symmetry to quantum geometrical nature of electrons, but its capability in structural characterization has not been materialized. Here, we establish a crucial connection between the symmetry of a material and the helicity of light. We employ monolayer MoS 2 as an example. In this work, we show that a linearly polarized laser pulse used in experiments is not ideal for structural characterization because it only generates in-plane anisotropy. It is the circularly polarized laser field that is capable of producing four distinctive HHG signals from the four phases of MoS 2 . This finally links the laser helicity to the crystal structure. The results are generic and are not affected by the Berry curvature, the interband or intraband contribution. Our study unleashes the power of HHG as a structural characterization tool for technologically important materials.
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Jia, Lei, Zhang, Zhiya, Yang, D. Z., Liu, Yanqing, Si, M. S., Zhang, G. P., Liu, Y. S.. 2020-04-14. Optical high-order harmonic generation as a structural characterization tool. https://doi.org/10.1103/physrevb.101.144304
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