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Impact of the Electronic Band Structure in High-Harmonic Generation Spectra of Solids

Author(s)
Tancogne-Dejean, Nicolas; Mücke, Oliver D.; Rubio, Angel; Kaertner, Franz X
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Abstract
An accurate analytic model describing the microscopic mechanism of high-harmonic generation (HHG) in solids is derived. Extensive first-principles simulations within a time-dependent density-functional framework corroborate the conclusions of the model. Our results reveal that (i) the emitted HHG spectra are highly anisotropic and laser-polarization dependent even for cubic crystals; (ii) the harmonic emission is enhanced by the inhomogeneity of the electron-nuclei potential; the yield is increased for heavier atoms; and (iii) the cutoff photon energy is driver-wavelength independent. Moreover, we show that it is possible to predict the laser polarization for optimal HHG in bulk crystals solely from the knowledge of their electronic band structure. Our results pave the way to better control and optimize HHG in solids by engineering their band structure.
Date issued
2017-02
URI
http://hdl.handle.net/1721.1/107908
Department
Massachusetts Institute of Technology. Research Laboratory of Electronics
Journal
Physical Review Letters
Publisher
American Physical Society
Citation
Tancogne-Dejean, Nicolas et al. “Impact of the Electronic Band Structure in High-Harmonic Generation Spectra of Solids.” Physical Review Letters 118.8 (2017): n. pag. © 2017 American Physical Society
Version: Final published version
ISSN
0031-9007
1079-7114

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